page	source_page_order	layout_page_order	layout_order	ref	label	role_guess	included_in_body	excluded_risk_level	body_decision_reason	parser_body_decision_reason	production_usage	visual_asset_type	visual_asset_label	visual_asset_caption_preview	truncation_marker	inside_body_region	body_region_id	zone	column	column_index	column_count	region_id	background_rgb	background_class	is_gray_background	has_frame_evidence	bbox	text_preview	cleaned_text_preview	text	cleaned_text
1	1	1	0	#/texts/0	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p1:body_region:0	top_margin	column_2_of_3	2	3	p1:top_margin:column_2_of_3:white	[255, 255, 255]	white	False	False	[224.33, 47.98, 146.5, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
1	2	2	1	#/texts/1	text	front_matter_heading	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:front_panel:gray	[229, 229, 229]	gray	True	False	[223.6, 79.88, 151.02, 1.59]	Contents lists available at ScienceDirect	Contents lists available at ScienceDirect	Contents lists available at ScienceDirect	Contents lists available at ScienceDirect
1	3	3	2	#/texts/2	section_header	title_candidate	False	low	first_page_front_matter_heading	first_page_front_matter_heading						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:front_panel:gray	[229, 229, 229]	gray	True	False	[204.04, 98.03, 190.03, 12.98]	Journal of Energy Chemistry	Journal of Energy Chemistry	Journal of Energy Chemistry	Journal of Energy Chemistry
1	5	4	3	#/texts/4	section_header	title_candidate	False	low	first_page_front_matter_heading	first_page_front_matter_heading						True	p1:body_region:0	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 178.96, 407.61, 29.75]	A versatile strategy to activate self-sacrificial templated Li2MnO3 by defect engineering toward advanced lithium storage	A versatile strategy to activate self-sacrificial templated Li2MnO3 by defect engineering toward advanced lithium storage	A versatile strategy to activate self-sacrificial templated Li2MnO3 by defect engineering toward advanced lithium storage	A versatile strategy to activate self-sacrificial templated Li2MnO3 by defect engineering toward advanced lithium storage
1	6	5	4	#/texts/5	text	front_matter_candidate	False	low	before_body_started	before_body_started						True	p1:body_region:0	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 218.76, 497.29, 26.45]	Jian-En Zhou a,1 , Yanhua Peng a,1 , Xiaoyan Sang b , Chunlei Wu c , Yiqing Liu a , Zhijian Peng a , Hong Ou a , Yongbo Wu d , Xiaoming Lin a, ⇑ , Yuepeng Cai a, ⇑	Jian-En Zhou a,1 , Yanhua Peng a,1 , Xiaoyan Sang b , Chunlei Wu c , Yiqing Liu a , Zhijian Peng a , Hong Ou a , Yongbo Wu d , Xiaoming Lin a, ⇑ , Yuepeng Cai a, ⇑	Jian-En Zhou a,1 , Yanhua Peng a,1 , Xiaoyan Sang b , Chunlei Wu c , Yiqing Liu a , Zhijian Peng a , Hong Ou a , Yongbo Wu d , Xiaoming Lin a, ⇑ , Yuepeng Cai a, ⇑	Jian-En Zhou a,1 , Yanhua Peng a,1 , Xiaoyan Sang b , Chunlei Wu c , Yiqing Liu a , Zhijian Peng a , Hong Ou a , Yongbo Wu d , Xiaoming Lin a, ⇑ , Yuepeng Cai a, ⇑
1	7	6	5	#/texts/6	footnote	footnote	False	low	first_page_summary	first_page_summary						True	p1:body_region:0	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 250.75, 505.2, 24.33]	a Guangzhou Key Laboratory of Materials for Energy Conversion and Storage, Joint Laboratory of Energy and Materials Chemistry (South China Normal University-Guangzhou Tianci New Materials Co., Ltd.), Key Laboratory of T…	a Guangzhou Key Laboratory of Materials for Energy Conversion and Storage, Joint Laboratory of Energy and Materials Chemistry (South China Normal University-Guangzhou Tianci New Materials Co., Ltd.), Key Laboratory of T…	a Guangzhou Key Laboratory of Materials for Energy Conversion and Storage, Joint Laboratory of Energy and Materials Chemistry (South China Normal University-Guangzhou Tianci New Materials Co., Ltd.), Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education, School of Chemistry, South China Normal University, Guangzhou 510006, Guangdong, China	a Guangzhou Key Laboratory of Materials for Energy Conversion and Storage, Joint Laboratory of Energy and Materials Chemistry (South China Normal University-Guangzhou Tianci New Materials Co., Ltd.), Key Laboratory of Theoretical Chemistry of Environment, Ministry of Education, School of Chemistry, South China Normal University, Guangzhou 510006, Guangdong, China
1	8	7	6	#/texts/7	footnote	footnote	False	low	docling_footnote	docling_footnote						True	p1:body_region:0	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 276.43, 487.59, 15.77]	b National Engineering Research Center for Carbohydrate Synthesis, Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, Jiangxi Normal University, Nanchang 330022, Jiangxi, China	b National Engineering Research Center for Carbohydrate Synthesis, Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, Jiangxi Normal University, Nanchang 330022, Jiangxi, China	b National Engineering Research Center for Carbohydrate Synthesis, Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, Jiangxi Normal University, Nanchang 330022, Jiangxi, China	b National Engineering Research Center for Carbohydrate Synthesis, Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, Jiangxi Normal University, Nanchang 330022, Jiangxi, China
1	9	8	7	#/texts/8	footnote	affiliation	False	low	first_page_author_or_affiliation	first_page_author_or_affiliation						False	None	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.64, 293.55, 300.24, 7.21]	c Guangzhou Huifu Research Institute Co., Ltd, Nanxiang San Lu, Guangzhou 510663, Guangdong, China	c Guangzhou Huifu Research Institute Co., Ltd, Nanxiang San Lu, Guangzhou 510663, Guangdong, China	c Guangzhou Huifu Research Institute Co., Ltd, Nanxiang San Lu, Guangzhou 510663, Guangdong, China	c Guangzhou Huifu Research Institute Co., Ltd, Nanxiang San Lu, Guangzhou 510663, Guangdong, China
1	10	9	8	#/texts/9	footnote	affiliation	False	medium	first_page_author_or_affiliation	first_page_author_or_affiliation						True	p1:body_region:0	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 302.17, 509.06, 15.77]	d Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, National Demonstration Center for Experimental Physics Education, School of Physics and Telecommunication Engineering, South China Norm…	d Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, National Demonstration Center for Experimental Physics Education, School of Physics and Telecommunication Engineering, South China Norm…	d Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, National Demonstration Center for Experimental Physics Education, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou 510006, Guangdong, China	d Guangdong Provincial Key Laboratory of Quantum Engineering and Quantum Materials, National Demonstration Center for Experimental Physics Education, School of Physics and Telecommunication Engineering, South China Normal University, Guangzhou 510006, Guangdong, China
1	11	10	9	#/texts/10	section_header	front_matter_heading	False	low	front_matter_heading	front_matter_heading						False	None	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.7, 338.58, 94.35, 11.02]	a r t i c l e i n f o	a r t i c l e i n f o	a r t i c l e i n f o	a r t i c l e i n f o
1	20	11	10	#/texts/19	section_header	abstract_heading	False	low	abstract_heading	abstract_heading						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:column_2_of_3:white	[255, 255, 255]	white	False	False	[202.22, 338.86, 65.22, 11.02]	a b s t r a c t	a b s t r a c t	a b s t r a c t	a b s t r a c t
1	12	12	11	#/texts/11	text	front_matter_candidate	False	low	outside_body_flow	outside_body_flow						False	None	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 361.66, 70.81, 31.61]	Article history: Received 14 April 2023 Revised 11 May 2023 Accepted 14 May 2023	Article history: Received 14 April 2023 Revised 11 May 2023 Accepted 14 May 2023	Article history: Received 14 April 2023 Revised 11 May 2023 Accepted 14 May 2023	Article history: Received 14 April 2023 Revised 11 May 2023 Accepted 14 May 2023
1	13	13	12	#/texts/12	text	metadata	False	low	first_page_metadata	first_page_metadata						False	None	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 395.91, 91.28, 5.93]	Available online 26 May 2023	Available online 26 May 2023	Available online 26 May 2023	Available online 26 May 2023
1	14	14	13	#/texts/13	text	front_matter_heading	False	low	front_matter_heading	front_matter_heading						False	None	front_matter	column_1_of_3	1	3	p1:front_matter:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 415.97, 77.77, 48.79]	Keywords: Li2MnO3 Metal-organic framework Oxygen vacancy Lithium-ion battery Electrochemical activity	Keywords: Li2MnO3 Metal-organic framework Oxygen vacancy Lithium-ion battery Electrochemical activity	Keywords: Li2MnO3 Metal-organic framework Oxygen vacancy Lithium-ion battery Electrochemical activity	Keywords: Li2MnO3 Metal-organic framework Oxygen vacancy Lithium-ion battery Electrochemical activity
1	21	15	14	#/texts/20	text	front_matter_candidate	False	low	first_page_summary	first_page_summary						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:column_2_of_3:white	[255, 255, 255]	white	False	False	[202.17, 362.1, 355.49, 169.21]	Despite the dazzling theoretical capacity, the devasting electrochemical activity of Li2MnO3 (LMO) caused by the difficult oxidation of Mn 4+ impedes its practical application as the lithium-ion battery (LIB) cathode. T…	Despite the dazzling theoretical capacity, the devasting electrochemical activity of Li2MnO3 (LMO) caused by the difficult oxidation of Mn 4+ impedes its practical application as the lithium-ion battery (LIB) cathode. T…	Despite the dazzling theoretical capacity, the devasting electrochemical activity of Li2MnO3 (LMO) caused by the difficult oxidation of Mn 4+ impedes its practical application as the lithium-ion battery (LIB) cathode. The efficacious activation of the Li2MnO3 by importing electrochemically active Mn 3+ ions or morphological engineering is instrumental to its lithium storage activity and structural integrity upon cycling. Herein, we propose a conceptual strategy with metal-organic frameworks (MOFs) as selfsacrificial templates to prepare oxygen-deficient Li2MnO3 (Ov-LMO) for exalted lithium storage performance. Attributed to optimized morphological features, LMO materials derived from Mn-BDC (H2BDC = 1,4-dicarboxybenzene) delivered superior cycling/rate performances compared with their counterparts derived from Mn-BTC (H3BTC = 1,3,5-benzenetricarboxylicacid) and Mn-PTC (H4PTC = pyromellitic acid). Both experimental and theoretical studies elucidate the efficacious activation of primitive LMO materials toward advanced lithium storage by importing oxygen deficiencies. Impressively, Ov-LMO derived from Mn-BDC (Ov-BDC-LMO) delivered intriguing reversible capacities (179.2 mA h g   1 at 20 mA g   1 after 200 cycles and 100.1 mA h g   1 at 80 mA g   1 after 300 cycles), which can be attributed to the small particle size that shortens pathways for Li + /electron transport, the enhanced redox activity induced by abundant oxygen vacancies, and the optimized electronic configuration that contributes to the faster lithium diffusivity. This work provides insights into the rational design of LMO by morphological and atomic modulation to direct its activation and practical application as an advanced LIB cathode.	Despite the dazzling theoretical capacity, the devasting electrochemical activity of Li2MnO3 (LMO) caused by the difficult oxidation of Mn 4+ impedes its practical application as the lithium-ion battery (LIB) cathode. The efficacious activation of the Li2MnO3 by importing electrochemically active Mn 3+ ions or morphological engineering is instrumental to its lithium storage activity and structural integrity upon cycling. Herein, we propose a conceptual strategy with metal-organic frameworks (MOFs) as selfsacrificial templates to prepare oxygen-deficient Li2MnO3 (Ov-LMO) for exalted lithium storage performance. Attributed to optimized morphological features, LMO materials derived from Mn-BDC (H2BDC = 1,4-dicarboxybenzene) delivered superior cycling/rate performances compared with their counterparts derived from Mn-BTC (H3BTC = 1,3,5-benzenetricarboxylicacid) and Mn-PTC (H4PTC = pyromellitic acid). Both experimental and theoretical studies elucidate the efficacious activation of primitive LMO materials toward advanced lithium storage by importing oxygen deficiencies. Impressively, Ov-LMO derived from Mn-BDC (Ov-BDC-LMO) delivered intriguing reversible capacities (179.2 mA h g   1 at 20 mA g   1 after 200 cycles and 100.1 mA h g   1 at 80 mA g   1 after 300 cycles), which can be attributed to the small particle size that shortens pathways for Li + /electron transport, the enhanced redox activity induced by abundant oxygen vacancies, and the optimized electronic configuration that contributes to the faster lithium diffusivity. This work provides insights into the rational design of LMO by morphological and atomic modulation to direct its activation and practical application as an advanced LIB cathode.
1	22	16	15	#/texts/21	text	metadata	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:column_2_of_3:white	[255, 255, 255]	white	False	False	[202.17, 532.25, 355.42, 18.23]	Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.	Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press.	Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.	Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press.
1	15	17	16	#/texts/14	section_header	body_heading	False	low	body_heading	body_heading						False	None	body_zone	column_1_of_3	1	3	p1:body_zone:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.7, 605.71, 60.13, 7.96]	1. Introduction	1. Introduction	1. Introduction	1. Introduction
1	17	19	18	#/texts/16	footnote	footnote	False	low	first_page_metadata	first_page_metadata						False	None	body_zone	column_1_of_3	1	3	p1:body_zone:column_1_of_3:white	[255, 255, 255]	white	False	False	[42.07, 692.51, 78.23, 13.76]	⇑ Corresponding authors.	⇑ Corresponding authors.	⇑ Corresponding authors.	⇑ Corresponding authors.
1	18	20	19	#/texts/17	footnote	footnote	False	low	first_page_metadata	first_page_metadata						False	None	body_zone	column_1_of_3	1	3	p1:body_zone:column_1_of_3:off_white	[247, 250, 251]	off_white	False	False	[48.81, 705.11, 220.95, 5.93]	E-mail addresses: linxm@scnu.edu.cn (X. Lin), caiyp@scnu.edu.cn (Y. Cai).	E-mail addresses: linxm@scnu.edu.cn (X. Lin), caiyp@scnu.edu.cn (Y. Cai).	E-mail addresses: linxm@scnu.edu.cn (X. Lin), caiyp@scnu.edu.cn (Y. Cai).	E-mail addresses: linxm@scnu.edu.cn (X. Lin), caiyp@scnu.edu.cn (Y. Cai).
1	19	21	20	#/texts/18	footnote	footnote	False	low	docling_footnote	docling_footnote						False	None	body_zone	column_1_of_3	1	3	p1:body_zone:column_1_of_3:white	[255, 255, 255]	white	False	False	[43.09, 712.68, 148.31, 7.21]	1 These authors contributed equally to this work.	1 These authors contributed equally to this work.	1 These authors contributed equally to this work.	1 These authors contributed equally to this work.
1	25	22	21	#/texts/24	page_footer	page_footer	False	low	first_page_metadata	first_page_metadata						False	None	bottom_margin	column_1_of_3	1	3	p1:bottom_margin:column_1_of_3:white	[255, 255, 255]	white	False	True	[37.59, 731.92, 136.91, 5.93]	https://doi.org/10.1016/j.jechem.2023.05.014		https://doi.org/10.1016/j.jechem.2023.05.014	
1	4	23	22	#/texts/3	text	front_matter_candidate	False	low	outside_body_flow	outside_body_flow						True	p1:body_region:0	front_matter	column_2_of_3	2	3	p1:front_matter:front_panel:gray	[229, 229, 229]	gray	True	True	[176.71, 135.67, 247.4, 1.59]	j o u r n a l homepage: www.elsevier.com/locate/jechem	j o u r n a l homepage:	j o u r n a l homepage: www.elsevier.com/locate/jechem	j o u r n a l homepage:
1	26	26	25	#/texts/25	page_footer	page_footer	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:0	bottom_margin	column_1_of_3	1	3	p1:bottom_margin:column_1_of_3:white	[255, 255, 255]	white	False	False	[37.59, 738.73, 520.05, 8.3]	2095-4956/ Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.	2095-4956/ Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press.	2095-4956/ Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press. All rights reserved.	2095-4956/ Ó 2023 Science Press and Dalian Institute of Chemical Physics, Chinese Academy of Sciences. Published by ELSEVIER B.V. and Science Press.
2	1	1	26	#/texts/26	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p2:body_region:0	top_margin	column_1_of_2	1	2	p2:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
2	2	5	30	#/texts/27	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p2:body_region:1	top_margin	column_2_of_2	2	2	p2:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
2	8	8	33	#/texts/32	section_header	body_heading	False	low	body_heading	body_heading						True	p2:body_region:1	body_zone	column_2_of_2	2	2	p2:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 433.65, 62.99, 7.96]	2. Experimental	2. Experimental	2. Experimental	2. Experimental
2	9	9	34	#/texts/33	section_header	body_heading	False	low	body_heading	body_heading						True	p2:body_region:1	body_zone	column_2_of_2	2	2	p2:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 455.0, 90.87, 7.42]	2.1. Material preparation	2.1. Material preparation	2.1. Material preparation	2.1. Material preparation
2	12	12	37	#/texts/36	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p2:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	165	165	165	165
3	1	1	38	#/texts/37	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p3:body_region:0	top_margin	column_1_of_2	1	2	p3:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
3	4	3	40	#/texts/40	section_header	body_heading	False	low	body_heading	body_heading						True	p3:body_region:0	body_zone	column_1_of_2	1	2	p3:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.7, 99.31, 106.87, 7.42]	2.2. Material characterization	2.2. Material characterization	2.2. Material characterization	2.2. Material characterization
3	6	5	42	#/texts/42	section_header	body_heading	False	low	body_heading	body_heading						True	p3:body_region:0	body_zone	column_1_of_2	1	2	p3:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.7, 360.83, 123.51, 7.42]	2.3. Electrochemical measurement	2.3. Electrochemical measurement	2.3. Electrochemical measurement	2.3. Electrochemical measurement
3	8	7	44	#/texts/44	section_header	body_heading	False	low	body_heading	body_heading						True	p3:body_region:0	body_zone	column_1_of_2	1	2	p3:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.7, 706.04, 77.39, 7.42]	2.4. Theoretical study	2.4. Theoretical study	2.4. Theoretical study	2.4. Theoretical study
3	2	9	46	#/texts/38	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p3:body_region:1	top_margin	column_2_of_2	2	2	p3:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
3	11	11	48	#/texts/46	section_header	body_heading	False	low	body_heading	body_heading						True	p3:body_region:1	body_zone	column_2_of_2	2	2	p3:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 213.96, 99.65, 7.96]	3. Results and discussion	3. Results and discussion	3. Results and discussion	3. Results and discussion
3	12	12	49	#/texts/47	section_header	body_heading	False	low	body_heading	body_heading						True	p3:body_region:1	body_zone	column_2_of_2	2	2	p3:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 235.31, 160.25, 7.42]	3.1. Structural and morphological properties	3.1. Structural and morphological properties	3.1. Structural and morphological properties	3.1. Structural and morphological properties
3	16	16	53	#/texts/51	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p3:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	166	166	166	166
4	3	1	54	#/texts/52	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	left	None	None	p4:top_margin:left:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
4	4	2	55	#/texts/53	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p4:top_margin:right:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
4	5	3	56	#/texts/54	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	full	None	None	p4:page_body:full:white	[255, 255, 255]	white	False	False	[37.59, 689.57, 520.05, 14.84]	Fig. 1. (a) The synthetic procedure of Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO. XRD patterns of (b) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (h) (Ov-)PTC-LMO. Rietveld refinements of (c) Ov-BDC-LMO, (d) BDC-LMO, (f) Ov-BTC-LM…	Fig. 1. (a) The synthetic procedure of Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO. XRD patterns of (b) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (h) (Ov-)PTC-LMO. Rietveld refinements of (c) Ov-BDC-LMO, (d) BDC-LMO, (f) Ov-BTC-LM…	Fig. 1. (a) The synthetic procedure of Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO. XRD patterns of (b) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (h) (Ov-)PTC-LMO. Rietveld refinements of (c) Ov-BDC-LMO, (d) BDC-LMO, (f) Ov-BTC-LMO, (g) BTC-LMO, (i) Ov-PTC-LMO, and (j) PTC-LMO.	Fig. 1. (a) The synthetic procedure of Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO. XRD patterns of (b) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (h) (Ov-)PTC-LMO. Rietveld refinements of (c) Ov-BDC-LMO, (d) BDC-LMO, (f) Ov-BTC-LMO, (g) BTC-LMO, (i) Ov-PTC-LMO, and (j) PTC-LMO.
4	6	6	59	#/texts/55	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left_crossing	None	None	p4:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	167	167	167	167
5	2	1	60	#/texts/56	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p5:body_region:0	top_margin	column_1_of_2	1	2	p5:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
5	3	2	61	#/texts/57	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p5:body_region:1	top_margin	column_2_of_2	2	2	p5:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
5	4	3	62	#/texts/58	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 576.81, 520.03, 14.84]	Fig. 2. (a-c) The panoramic Raman spectra and the high-resolution XPS spectra of (d-f) Li 1 s , (g-i) O 1 s , and (j-l) Mn 2 p for (Ov-)BDC-LMO, (Ov-)BTC-LMO, and (Ov-)PTC-LMO, respectively.	Fig. 2. (a-c) The panoramic Raman spectra and the high-resolution XPS spectra of (d-f) Li 1 s , (g-i) O 1 s , and (j-l) Mn 2 p for (Ov-)BDC-LMO, (Ov-)BTC-LMO, and (Ov-)PTC-LMO, respectively.	Fig. 2. (a-c) The panoramic Raman spectra and the high-resolution XPS spectra of (d-f) Li 1 s , (g-i) O 1 s , and (j-l) Mn 2 p for (Ov-)BDC-LMO, (Ov-)BTC-LMO, and (Ov-)PTC-LMO, respectively.	Fig. 2. (a-c) The panoramic Raman spectra and the high-resolution XPS spectra of (d-f) Li 1 s , (g-i) O 1 s , and (j-l) Mn 2 p for (Ov-)BDC-LMO, (Ov-)BTC-LMO, and (Ov-)PTC-LMO, respectively.
5	7	7	66	#/texts/61	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p5:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	168	168	168	168
6	2	1	67	#/texts/62	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p6:body_region:0	top_margin	column_1_of_2	1	2	p6:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
6	3	4	70	#/texts/63	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p6:body_region:1	top_margin	column_2_of_2	2	2	p6:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
6	8	8	74	#/texts/67	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p6:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	169	169	169	169
7	2	1	75	#/texts/68	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p7:body_region:0	top_margin	column_1_of_2	1	2	p7:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
7	3	2	76	#/texts/69	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p7:body_region:1	top_margin	column_2_of_2	2	2	p7:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
7	4	3	77	#/texts/70	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	front_matter	column_1_of_2	1	2	p7:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[51.02, 441.88, 493.16, 6.37]	Fig. 3. The SEM images of (a) Mn-BDC, (b) BDC-LMO, (c) Ov-BDC-LMO, (d) Mn-BTC, (e) BTC-LMO, (f) Ov-BTC-LMO, (g) Mn-PTC, (h) PTC-LMO, and (i) Ov-PTC-LMO.	Fig. 3. The SEM images of (a) Mn-BDC, (b) BDC-LMO, (c) Ov-BDC-LMO, (d) Mn-BTC, (e) BTC-LMO, (f) Ov-BTC-LMO, (g) Mn-PTC, (h) PTC-LMO, and (i) Ov-PTC-LMO.	Fig. 3. The SEM images of (a) Mn-BDC, (b) BDC-LMO, (c) Ov-BDC-LMO, (d) Mn-BTC, (e) BTC-LMO, (f) Ov-BTC-LMO, (g) Mn-PTC, (h) PTC-LMO, and (i) Ov-PTC-LMO.	Fig. 3. The SEM images of (a) Mn-BDC, (b) BDC-LMO, (c) Ov-BDC-LMO, (d) Mn-BTC, (e) BTC-LMO, (f) Ov-BTC-LMO, (g) Mn-PTC, (h) PTC-LMO, and (i) Ov-PTC-LMO.
7	5	5	79	#/texts/71	section_header	body_heading	False	low	body_heading	body_heading						True	p7:body_region:0	body_zone	column_1_of_2	1	2	p7:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.7, 716.52, 110.65, 7.42]	3.2. Electrochemical properties	3.2. Electrochemical properties	3.2. Electrochemical properties	3.2. Electrochemical properties
7	9	9	83	#/texts/74	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p7:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.38, 5.93]	170	170	170	170
8	3	1	84	#/texts/75	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p8:body_region:0	top_margin	column_1_of_2	1	2	p8:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
8	4	2	85	#/texts/76	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p8:body_region:1	top_margin	column_2_of_2	2	2	p8:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
8	5	3	86	#/texts/77	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p8:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 603.74, 520.03, 14.84]	Fig. 4. (a-f) TEM images, (g-l) HRTEM images, (m-r) SAED patterns, and (s-x) HAADF-STEM images and corresponding element mappings of BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 4. (a-f) TEM images, (g-l) HRTEM images, (m-r) SAED patterns, and (s-x) HAADF-STEM images and corresponding element mappings of BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 4. (a-f) TEM images, (g-l) HRTEM images, (m-r) SAED patterns, and (s-x) HAADF-STEM images and corresponding element mappings of BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 4. (a-f) TEM images, (g-l) HRTEM images, (m-r) SAED patterns, and (s-x) HAADF-STEM images and corresponding element mappings of BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, Ov-BTC-LMO, and Ov-PTC-LMO, respectively.
8	6	6	89	#/texts/78	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p8:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	171	171	171	171
9	2	1	90	#/texts/79	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	column_1_of_2	1	2	p9:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
9	3	2	91	#/texts/80	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	column_2_of_2	2	2	p9:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
9	4	3	92	#/texts/81	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p9:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 629.65, 520.04, 14.9]	Fig. 5. (a-f) Spherical aberration-corrected HAADF-STEM and (g-l) spherical aberration-corrected ABF-STEM images for BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, OvBTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 5. (a-f) Spherical aberration-corrected HAADF-STEM and (g-l) spherical aberration-corrected ABF-STEM images for BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, OvBTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 5. (a-f) Spherical aberration-corrected HAADF-STEM and (g-l) spherical aberration-corrected ABF-STEM images for BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, OvBTC-LMO, and Ov-PTC-LMO, respectively.	Fig. 5. (a-f) Spherical aberration-corrected HAADF-STEM and (g-l) spherical aberration-corrected ABF-STEM images for BDC-LMO, BTC-LMO, PTC-LMO, Ov-BDC-LMO, OvBTC-LMO, and Ov-PTC-LMO, respectively.
9	6	6	95	#/texts/83	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p9:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	172	172	172	172
10	1	1	96	#/texts/84	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p10:body_region:0	top_margin	column_1_of_2	1	2	p10:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
10	2	2	97	#/texts/85	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p10:body_region:1	top_margin	column_2_of_2	2	2	p10:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
10	3	3	98	#/texts/86	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p10:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 530.55, 520.08, 24.48]	Fig. 6. The cycling performance at 20 mA g   1 for 200 loops of (a) (Ov-)BDC-LMO, (b) (Ov-)BTC-LMO, and (c) (Ov-)PTC-LMO. The rate performance at 0.1, 0.2, 0.4, 1, and 2 C (1 C = 200 mA g   1 ) of (d) (Ov-)BDC-LMO, (e) …	Fig. 6. The cycling performance at 20 mA g   1 for 200 loops of (a) (Ov-)BDC-LMO, (b) (Ov-)BTC-LMO, and (c) (Ov-)PTC-LMO. The rate performance at 0.1, 0.2, 0.4, 1, and 2 C (1 C = 200 mA g   1 ) of (d) (Ov-)BDC-LMO, (e) …	Fig. 6. The cycling performance at 20 mA g   1 for 200 loops of (a) (Ov-)BDC-LMO, (b) (Ov-)BTC-LMO, and (c) (Ov-)PTC-LMO. The rate performance at 0.1, 0.2, 0.4, 1, and 2 C (1 C = 200 mA g   1 ) of (d) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (f) (Ov-)PTC-LMO. The GCD profiles at the 1st, 25th, 50th, and 100th cycle during the cycling test at 20 mA g   1 of (g) Ov-BDC-LMO, (h) Ov-BTC-LMO, and (i) Ov-PTC-LMO. Nyquist plots after 100 cycles at 20 mA g   1 for (j) (Ov-)BDC-LMO, (k) (Ov-)BTC-LMO, and (l) (Ov-)PTC-LMO.	Fig. 6. The cycling performance at 20 mA g   1 for 200 loops of (a) (Ov-)BDC-LMO, (b) (Ov-)BTC-LMO, and (c) (Ov-)PTC-LMO. The rate performance at 0.1, 0.2, 0.4, 1, and 2 C (1 C = 200 mA g   1 ) of (d) (Ov-)BDC-LMO, (e) (Ov-)BTC-LMO, and (f) (Ov-)PTC-LMO. The GCD profiles at the 1st, 25th, 50th, and 100th cycle during the cycling test at 20 mA g   1 of (g) Ov-BDC-LMO, (h) Ov-BTC-LMO, and (i) Ov-PTC-LMO. Nyquist plots after 100 cycles at 20 mA g   1 for (j) (Ov-)BDC-LMO, (k) (Ov-)BTC-LMO, and (l) (Ov-)PTC-LMO.
10	7	7	102	#/texts/89	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p10:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	173	173	173	173
11	2	1	103	#/texts/90	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p11:body_region:0	top_margin	column_1_of_2	1	2	p11:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
11	3	6	108	#/texts/91	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p11:body_region:1	top_margin	column_2_of_2	2	2	p11:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
11	10	10	112	#/texts/97	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p11:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	174	174	174	174
12	1	1	113	#/texts/98	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	left	None	None	p12:top_margin:left:white	[255, 255, 255]	white	False	False	[37.59, 48.2, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
12	2	2	114	#/texts/99	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p12:top_margin:right:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
12	3	3	115	#/texts/100	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	bottom_margin	full	None	None	p12:bottom_margin:full:white	[255, 255, 255]	white	False	False	[37.59, 714.69, 520.07, 24.53]	Fig. 7. The CV curves for the first 3 cycles at 0.2 mV s   1 for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, (c) Ov-PTC-LMO, (d) BDC-LMO, (e) BTC-LMO, and (f) PTC-LMO. The schematic illustrations of the first cycle for (g) Ov-LMO a…	Fig. 7. The CV curves for the first 3 cycles at 0.2 mV s   1 for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, (c) Ov-PTC-LMO, (d) BDC-LMO, (e) BTC-LMO, and (f) PTC-LMO. The schematic illustrations of the first cycle for (g) Ov-LMO a…	Fig. 7. The CV curves for the first 3 cycles at 0.2 mV s   1 for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, (c) Ov-PTC-LMO, (d) BDC-LMO, (e) BTC-LMO, and (f) PTC-LMO. The schematic illustrations of the first cycle for (g) Ov-LMO and (h) LMO. The separation of the pseudocapacitive contribution at 0.4 mV s   1 for (i) Ov-BDC-LMO, (j) Ov-BTC-LMO, and (k) OvPTC-LMO. The pseudocapacitive contribution ratios at 0.2-1.0 mV s   1 for (l) Ov-BDC-LMO, (m) Ov-BTC-LMO, and (n) Ov-PTC-LMO.	Fig. 7. The CV curves for the first 3 cycles at 0.2 mV s   1 for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, (c) Ov-PTC-LMO, (d) BDC-LMO, (e) BTC-LMO, and (f) PTC-LMO. The schematic illustrations of the first cycle for (g) Ov-LMO and (h) LMO. The separation of the pseudocapacitive contribution at 0.4 mV s   1 for (i) Ov-BDC-LMO, (j) Ov-BTC-LMO, and (k) OvPTC-LMO. The pseudocapacitive contribution ratios at 0.2-1.0 mV s   1 for (l) Ov-BDC-LMO, (m) Ov-BTC-LMO, and (n) Ov-PTC-LMO.
12	4	4	116	#/texts/101	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	right_crossing	None	None	p12:bottom_margin:right_crossing:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	175	175	175	175
13	2	1	117	#/texts/102	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p13:body_region:0	top_margin	column_1_of_2	1	2	p13:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
13	3	5	121	#/texts/103	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p13:body_region:1	top_margin	column_2_of_2	2	2	p13:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.71, 48.21, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
13	9	9	125	#/texts/108	section_header	body_heading	False	low	body_heading	body_heading						True	p13:body_region:1	body_zone	column_2_of_2	2	2	p13:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 680.01, 97.57, 7.42]	3.3. DFT calculation results	3.3. DFT calculation results	3.3. DFT calculation results	3.3. DFT calculation results
13	11	11	127	#/texts/110	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p13:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	176	176	176	176
14	2	1	128	#/texts/111	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p14:body_region:0	top_margin	column_1_of_2	1	2	p14:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.21, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
14	3	2	129	#/texts/112	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p14:body_region:1	top_margin	column_2_of_2	2	2	p14:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
14	4	3	130	#/texts/113	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p14:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 575.68, 520.03, 31.96]	Fig. 8. The single-step profiles of GITT titration during the charging process for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, and (c) Ov-PTC-LMO. The GITT curves of (d) Ov-BDC-LMO, (e) Ov-BTC-LMO, and (f) Ov-PTC-LMO. (g) The calcu…	Fig. 8. The single-step profiles of GITT titration during the charging process for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, and (c) Ov-PTC-LMO. The GITT curves of (d) Ov-BDC-LMO, (e) Ov-BTC-LMO, and (f) Ov-PTC-LMO. (g) The calcu…	Fig. 8. The single-step profiles of GITT titration during the charging process for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, and (c) Ov-PTC-LMO. The GITT curves of (d) Ov-BDC-LMO, (e) Ov-BTC-LMO, and (f) Ov-PTC-LMO. (g) The calculated Li + diffusion coefficients upon charging for all samples. (h) The schematic illustration of the mechanism of boosted lithium diffusion for Ov-LMO samples. (i) Ex situ XRD patterns at different cycling states (before cycling, after 50 cycles, and after 100 cycles) and (j) Ex situ high-resolution XPS spectra at different charge/discharge states (before charging, charge to 4.7 V, and discharge to 2.5 V) of Mn 2 p for Ov-BDC-LMO during the initial cycle.	Fig. 8. The single-step profiles of GITT titration during the charging process for (a) Ov-BDC-LMO, (b) Ov-BTC-LMO, and (c) Ov-PTC-LMO. The GITT curves of (d) Ov-BDC-LMO, (e) Ov-BTC-LMO, and (f) Ov-PTC-LMO. (g) The calculated Li + diffusion coefficients upon charging for all samples. (h) The schematic illustration of the mechanism of boosted lithium diffusion for Ov-LMO samples. (i) Ex situ XRD patterns at different cycling states (before cycling, after 50 cycles, and after 100 cycles) and (j) Ex situ high-resolution XPS spectra at different charge/discharge states (before charging, charge to 4.7 V, and discharge to 2.5 V) of Mn 2 p for Ov-BDC-LMO during the initial cycle.
14	8	8	135	#/texts/116	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_2_of_2	2	2	p14:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	177	177	177	177
15	1	1	136	#/texts/117	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	left	None	None	p15:top_margin:left:white	[255, 255, 255]	white	False	False	[37.59, 48.2, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
15	2	2	137	#/texts/118	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p15:top_margin:right:white	[255, 255, 255]	white	False	False	[417.71, 48.2, 139.91, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
15	3	3	138	#/texts/119	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	bottom_margin	full	None	None	p15:bottom_margin:full:white	[255, 255, 255]	white	False	False	[37.59, 715.76, 520.05, 23.46]	Fig. 9. The optimized models of (a) LMO and (b) Ov-LMO. (c) The 3D differential charge density distribution of Ov-LMO. (d) The TDOS curves of LMO and Ov-LMO. The PDOS curves of (e) LMO and (f) Ov-LMO. The energy barrier…	Fig. 9. The optimized models of (a) LMO and (b) Ov-LMO. (c) The 3D differential charge density distribution of Ov-LMO. (d) The TDOS curves of LMO and Ov-LMO. The PDOS curves of (e) LMO and (f) Ov-LMO. The energy barrier…	Fig. 9. The optimized models of (a) LMO and (b) Ov-LMO. (c) The 3D differential charge density distribution of Ov-LMO. (d) The TDOS curves of LMO and Ov-LMO. The PDOS curves of (e) LMO and (f) Ov-LMO. The energy barriers during delithiation for (g) LMO and (h) Ov-LMO. The lithium vacancy migration paths and corresponding energy barrier curves for (i) LMO and (j) Ov-LMO.	Fig. 9. The optimized models of (a) LMO and (b) Ov-LMO. (c) The 3D differential charge density distribution of Ov-LMO. (d) The TDOS curves of LMO and Ov-LMO. The PDOS curves of (e) LMO and (f) Ov-LMO. The energy barriers during delithiation for (g) LMO and (h) Ov-LMO. The lithium vacancy migration paths and corresponding energy barrier curves for (i) LMO and (j) Ov-LMO.
15	4	4	139	#/texts/120	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left_crossing	None	None	p15:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	178	178	178	178
16	2	1	140	#/texts/121	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p16:body_region:0	top_margin	column_1_of_2	1	2	p16:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.59, 48.2, 93.88, 5.93]	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.	J.-E. Zhou, Y. Peng, X. Sang et al.
16	7	6	145	#/texts/126	section_header	body_heading	False	low	body_heading	body_heading						True	p16:body_region:0	body_zone	column_1_of_2	1	2	p16:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[37.7, 716.09, 57.15, 7.96]	4. Conclusions	4. Conclusions	4. Conclusions	4. Conclusions
16	3	8	147	#/texts/122	page_header	page_header	False	low	docling_page_header	docling_page_header						True	p16:body_region:1	top_margin	column_2_of_2	2	2	p16:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[417.77, 48.15, 139.86, 5.93]	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180	Journal of Energy Chemistry 85 (2023) 164-180
16	10	10	149	#/texts/128	section_header	back_matter_heading	False	low	back_matter_heading	back_matter_heading					stop_trigger	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.6, 298.54, 134.88, 7.96]	Declaration of competing interest	Declaration of competing interest	Declaration of competing interest	Declaration of competing interest
16	11	11	150	#/texts/129	text	body_candidate_excluded	False	medium	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.6, 319.9, 251.12, 28.34]	The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.	The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.	The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.	The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
16	12	12	151	#/texts/130	section_header	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.6, 362.22, 73.61, 7.96]	Acknowledgments	Acknowledgments	Acknowledgments	Acknowledgments
16	13	13	152	#/texts/131	text	back_matter_text	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.6, 383.57, 251.08, 101.58]	We gratefully acknowledge the financial support from the Special Funds for the Cultivation of Guangdong College Students' Scientific and Technological Innovation (''Climbing Program' Special Funds, pdjh2023b0145), the R…	We gratefully acknowledge the financial support from the Special Funds for the Cultivation of Guangdong College Students' Scientific and Technological Innovation (''Climbing Program' Special Funds, pdjh2023b0145), the R…	We gratefully acknowledge the financial support from the Special Funds for the Cultivation of Guangdong College Students' Scientific and Technological Innovation (''Climbing Program' Special Funds, pdjh2023b0145), the Research and Development Plan Project in Key Fields of Guangdong Province (2020B0101030005), the Applied special project of Guangdong Provincial Science and Technology Plan (2017B090917002), and the Basic and Applied Basic Research Fund of Guangdong Province (2019B1515120027). Furthermore, the authors would like to thank the Shiyanjia lab (https://www.shiyanjia.com) for the TEM test.	We gratefully acknowledge the financial support from the Special Funds for the Cultivation of Guangdong College Students' Scientific and Technological Innovation (''Climbing Program' Special Funds, pdjh2023b0145), the Research and Development Plan Project in Key Fields of Guangdong Province (2020B0101030005), the Applied special project of Guangdong Provincial Science and Technology Plan (2017B090917002), and the Basic and Applied Basic Research Fund of Guangdong Province (2019B1515120027). Furthermore, the authors would like to thank the Shiyanjia lab ( for the TEM test.
16	14	14	153	#/texts/132	section_header	unknown_text	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 500.83, 147.31, 7.96]	Appendix A. Supplementary material	Appendix A. Supplementary material	Appendix A. Supplementary material	Appendix A. Supplementary material
16	15	15	154	#/texts/133	text	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.6, 522.18, 251.04, 17.91]	Supplementary data to this article can be found online at https://doi.org/10.1016/j.jechem.2023.05.014.	Supplementary data to this article can be found online at	Supplementary data to this article can be found online at https://doi.org/10.1016/j.jechem.2023.05.014.	Supplementary data to this article can be found online at
16	16	16	155	#/texts/134	section_header	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 554.06, 43.1, 7.96]	References	References	References	References
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16	23	23	162	#/texts/141	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[309.83, 653.41, 247.82, 13.93]	M. Zhang, L. Qiu, Y. Sun, Y. Song, Z. Wu, Y. Liu, Z. Yang, Y. Liu, J. Zhang, B. Zhong, X. Guo, ACS. Appl. Mater. Interfaces 13 (2021) 40995-41003.	M. Zhang, L. Qiu, Y. Sun, Y. Song, Z. Wu, Y. Liu, Z. Yang, Y. Liu, J. Zhang, B. Zhong, X. Guo, ACS. Appl. Mater. Interfaces 13 (2021) 40995-41003.	M. Zhang, L. Qiu, Y. Sun, Y. Song, Z. Wu, Y. Liu, Z. Yang, Y. Liu, J. Zhang, B. Zhong, X. Guo, ACS. Appl. Mater. Interfaces 13 (2021) 40995-41003.	M. Zhang, L. Qiu, Y. Sun, Y. Song, Z. Wu, Y. Liu, Z. Yang, Y. Liu, J. Zhang, B. Zhong, X. Guo, ACS. Appl. Mater. Interfaces 13 (2021) 40995-41003.
16	24	24	163	#/texts/142	list_item	affiliation	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[309.83, 669.34, 247.8, 5.93]	B. Wu, Z. Lin, G. Zhang, D. Zhang, W. Zhang, G. Li, Y. Che, L. Chen, H. Wang, W.	B. Wu, Z. Lin, G. Zhang, D. Zhang, W. Zhang, G. Li, Y. Che, L. Chen, H. Wang, W.	B. Wu, Z. Lin, G. Zhang, D. Zhang, W. Zhang, G. Li, Y. Che, L. Chen, H. Wang, W.	B. Wu, Z. Lin, G. Zhang, D. Zhang, W. Zhang, G. Li, Y. Che, L. Chen, H. Wang, W.
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16	26	26	165	#/texts/144	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[309.83, 685.32, 247.83, 13.87]	F. Ning, H. Shang, B. Li, N. Jiang, R. Zou, D. Xia, Energy Storage Mater. 22 (2019) 113-119.	F. Ning, H. Shang, B. Li, N. Jiang, R. Zou, D. Xia, Energy Storage Mater. 22 (2019) 113-119.	F. Ning, H. Shang, B. Li, N. Jiang, R. Zou, D. Xia, Energy Storage Mater. 22 (2019) 113-119.	F. Ning, H. Shang, B. Li, N. Jiang, R. Zou, D. Xia, Energy Storage Mater. 22 (2019) 113-119.
16	27	27	166	#/texts/145	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	front_matter	column_2_of_2	2	2	p16:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 701.25, 240.53, 5.93]	W. Zhao, L. Xiong, Y. Xu, H. Li, Z. Ren, J. Power Sources 349 (2017) 11-17.	W. Zhao, L. Xiong, Y. Xu, H. Li, Z. Ren, J. Power Sources 349 (2017) 11-17.	W. Zhao, L. Xiong, Y. Xu, H. Li, Z. Ren, J. Power Sources 349 (2017) 11-17.	W. Zhao, L. Xiong, Y. Xu, H. Li, Z. Ren, J. Power Sources 349 (2017) 11-17.
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16	29	29	168	#/texts/147	list_item	page_margin_footer	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p16:body_region:1	bottom_margin	column_2_of_2	2	2	p16:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[306.65, 733.12, 238.99, 5.93]	Y. Shin, K.A. Persson, ACS. Appl. Mater. Interfaces 8 (2016) 25595-25602.	Y. Shin, K.A. Persson, ACS. Appl. Mater. Interfaces 8 (2016) 25595-25602.	Y. Shin, K.A. Persson, ACS. Appl. Mater. Interfaces 8 (2016) 25595-25602.	Y. Shin, K.A. Persson, ACS. Appl. Mater. Interfaces 8 (2016) 25595-25602.
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16	31	31	170	#/texts/149	page_footer	page_footer	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	bottom_margin	column_2_of_2	2	2	p16:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.45, 5.93]	179	179	179	179
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17	26	45	215	#/texts/175	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	left_crossing	None	None	p17:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[37.65, 338.93, 251.01, 13.93]	Y. Wang, L. Feng, W. Fan, K.Y. Wang, X. Wang, X. Wang, K. Zhang, X. Zhang, F. Dai, D. Sun, H.C. Zhou, J. Am. Chem. Soc. 141 (2019) 6967-6975.	Y. Wang, L. Feng, W. Fan, K.Y. Wang, X. Wang, X. Wang, K. Zhang, X. Zhang, F. Dai, D. Sun, H.C. Zhou, J. Am. Chem. Soc. 141 (2019) 6967-6975.	Y. Wang, L. Feng, W. Fan, K.Y. Wang, X. Wang, X. Wang, K. Zhang, X. Zhang, F. Dai, D. Sun, H.C. Zhou, J. Am. Chem. Soc. 141 (2019) 6967-6975.	Y. Wang, L. Feng, W. Fan, K.Y. Wang, X. Wang, X. Wang, K. Zhang, X. Zhang, F. Dai, D. Sun, H.C. Zhou, J. Am. Chem. Soc. 141 (2019) 6967-6975.
17	48	46	216	#/texts/197	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	right_crossing	None	None	p17:page_body:right_crossing:white	[255, 255, 255]	white	False	False	[306.65, 338.93, 233.89, 5.93]	J. Yang, J. Xian, Q. Liu, Y. Sun, G. Li, J. Energy Chem. 69 (2022) 524-530.	J. Yang, J. Xian, Q. Liu, Y. Sun, G. Li, J. Energy Chem. 69 (2022) 524-530.	J. Yang, J. Xian, Q. Liu, Y. Sun, G. Li, J. Energy Chem. 69 (2022) 524-530.	J. Yang, J. Xian, Q. Liu, Y. Sun, G. Li, J. Energy Chem. 69 (2022) 524-530.
17	49	47	217	#/texts/198	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	right_crossing	None	None	p17:page_body:right_crossing:white	[255, 255, 255]	white	False	False	[306.65, 346.92, 244.72, 5.93]	J. Lin, T. Huang, M. Lu, X. Lin, R.C.K. Reddy, X. Xu, Chem. Eng. J. 433 (2022).	J. Lin, T. Huang, M. Lu, X. Lin, R.C.K. Reddy, X. Xu, Chem. Eng. J. 433 (2022).	J. Lin, T. Huang, M. Lu, X. Lin, R.C.K. Reddy, X. Xu, Chem. Eng. J. 433 (2022).	J. Lin, T. Huang, M. Lu, X. Lin, R.C.K. Reddy, X. Xu, Chem. Eng. J. 433 (2022).
17	27	48	218	#/texts/176	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	left_crossing	None	None	p17:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[37.64, 354.86, 251.04, 13.93]	L. Xiao, J. Xiao, X. Yu, P. Yan, J. Zheng, M. Engelhard, P. Bhattacharya, C. Wang, X.-Q. Yang, J.-G. Zhang, Nano Energy 16 (2015) 143-151.	L. Xiao, J. Xiao, X. Yu, P. Yan, J. Zheng, M. Engelhard, P. Bhattacharya, C. Wang, X.-Q. Yang, J.-G. Zhang, Nano Energy 16 (2015) 143-151.	L. Xiao, J. Xiao, X. Yu, P. Yan, J. Zheng, M. Engelhard, P. Bhattacharya, C. Wang, X.-Q. Yang, J.-G. Zhang, Nano Energy 16 (2015) 143-151.	L. Xiao, J. Xiao, X. Yu, P. Yan, J. Zheng, M. Engelhard, P. Bhattacharya, C. Wang, X.-Q. Yang, J.-G. Zhang, Nano Energy 16 (2015) 143-151.
17	50	49	219	#/texts/199	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	right_crossing	None	None	p17:page_body:right_crossing:white	[255, 255, 255]	white	False	False	[306.65, 354.86, 250.96, 13.93]	Q. Li, Y. Zhao, H. Liu, P. Xu, L. Yang, K. Pei, Q. Zeng, Y. Feng, P. Wang, R. Che, ACS Nano 13 (2019) (1934) 11921-11931.	Q. Li, Y. Zhao, H. Liu, P. Xu, L. Yang, K. Pei, Q. Zeng, Y. Feng, P. Wang, R. Che, ACS Nano 13 (2019) (1934) 11921-11931.	Q. Li, Y. Zhao, H. Liu, P. Xu, L. Yang, K. Pei, Q. Zeng, Y. Feng, P. Wang, R. Che, ACS Nano 13 (2019) (1934) 11921-11931.	Q. Li, Y. Zhao, H. Liu, P. Xu, L. Yang, K. Pei, Q. Zeng, Y. Feng, P. Wang, R. Che, ACS Nano 13 (2019) (1934) 11921-11931.
17	28	50	220	#/texts/177	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	left_crossing	None	None	p17:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[37.65, 370.79, 250.98, 13.93]	J.-E. Zhou, J. Chen, Y. Peng, Y. Zheng, A. Zeb, X. Lin, Coord. Chem. Rev. 472 (2022).	J.-E. Zhou, J. Chen, Y. Peng, Y. Zheng, A. Zeb, X. Lin, Coord. Chem. Rev. 472 (2022).	J.-E. Zhou, J. Chen, Y. Peng, Y. Zheng, A. Zeb, X. Lin, Coord. Chem. Rev. 472 (2022).	J.-E. Zhou, J. Chen, Y. Peng, Y. Zheng, A. Zeb, X. Lin, Coord. Chem. Rev. 472 (2022).
17	51	51	221	#/texts/200	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	right_crossing	None	None	p17:page_body:right_crossing:white	[255, 255, 255]	white	False	False	[306.65, 370.79, 250.97, 13.93]	M.A. Kebede, M.J. Phasha, N. Kunjuzwa, L.J. le Roux, D. Mkhonto, K.I. Ozoemena, M.K. Mathe, Sustain. Energy Technol. Assess. 5 (2014) 44-49.	M.A. Kebede, M.J. Phasha, N. Kunjuzwa, L.J. le Roux, D. Mkhonto, K.I. Ozoemena, M.K. Mathe, Sustain. Energy Technol. Assess. 5 (2014) 44-49.	M.A. Kebede, M.J. Phasha, N. Kunjuzwa, L.J. le Roux, D. Mkhonto, K.I. Ozoemena, M.K. Mathe, Sustain. Energy Technol. Assess. 5 (2014) 44-49.	M.A. Kebede, M.J. Phasha, N. Kunjuzwa, L.J. le Roux, D. Mkhonto, K.I. Ozoemena, M.K. Mathe, Sustain. Energy Technol. Assess. 5 (2014) 44-49.
17	52	52	222	#/texts/201	page_footer	page_footer	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	bottom_margin	left_crossing	None	None	p17:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[291.91, 764.24, 11.38, 5.93]	180	180	180	180
