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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_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 77.5, 490.56, 63.65]	Cu-N Synergism Regulation to Enhance Anionic Redox Reversibility and Activity of Li- and Mn-Rich Layered Oxides Cathode	Cu-N Synergism Regulation to Enhance Anionic Redox Reversibility and Activity of Li- and Mn-Rich Layered Oxides Cathode
1	4	4	3	#/texts/3	text	affiliation	False	medium	front_matter_author_line	front_matter_author_line						True	p1:body_region:0	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 160.21, 457.88, 48.46]	Zhijun Wu, Chenhui Yan, Panyu Gao, Liaona She,* Xin Zhang, Yue Lin, Xuebin Yu, Yongfeng Liu, Wenping Sun, Yinzhu Jiang, Yaxiong Yang,* Mingxia Gao,* and Hongge Pan*	Zhijun Wu, Chenhui Yan, Panyu Gao, Liaona She,* Xin Zhang, Yue Lin, Xuebin Yu, Yongfeng Liu, Wenping Sun, Yinzhu Jiang, Yaxiong Yang,* Mingxia Gao,* and Hongge Pan*
1	5	5	4	#/texts/4	text	abstract_candidate	False	medium	implicit_abstract	implicit_abstract						True	p1:body_region:0	front_matter	column_1_of_2	1	2	p1:front_matter:front_panel:gray	[203, 204, 203]	gray	True	False	[50.81, 245.62, 312.82, 228.87]	Anionic redox chemistry enables extraordinary capacity for Li- and Mn-rich layered oxides (LMROs) cathodes. Unfortunately, irreversible surface oxygen evolution evokes the pernicious phase transition, structural deterio…	Anionic redox chemistry enables extraordinary capacity for Li- and Mn-rich layered oxides (LMROs) cathodes. Unfortunately, irreversible surface oxygen evolution evokes the pernicious phase transition, structural deterio…
1	6	6	5	#/texts/5	section_header	body_heading	False	low	body_heading	body_heading						True	p1:body_region:0	body_zone	column_1_of_2	1	2	p1:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 511.91, 70.4, 10.25]	1. Introduction	1. Introduction
1	7	7	6	#/texts/6	text	body	True	None	body	body						True	p1:body_region:0	body_zone	column_1_of_2	1	2	p1:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 531.27, 240.95, 19.41]	Lithium-ion batteries (LIBs) have been worldwide applied in 3C products, electric vehicles (EVs), and grid energy storage in past	Lithium-ion batteries (LIBs) have been worldwide applied in 3C products, electric vehicles (EVs), and grid energy storage in past
1	8	8	7	#/texts/7	text	affiliation	False	low	affiliation_block	affiliation_block						True	p1:body_region:0	body_zone	column_1_of_2	1	2	p1:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 570.08, 169.38, 34.09]	Z. Wu, C. Yan, L. She, Y. Yang, H. Pan Institute of Science and Technology for New Energy Xi'an Technological University Xi'an 710021, China	Z. Wu, C. Yan, L. She, Y. Yang, H. Pan Institute of Science and Technology for New Energy Xi'an Technological University Xi'an 710021, China
1	9	9	8	#/texts/8	text	metadata	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:0	body_zone	column_1_of_2	1	2	p1:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 605.94, 193.95, 16.17]	E-mail: sheliaona@xatu.edu.cn; yangyaxiong@xatu.edu.cn; honggepan@zju.edu.cn	E-mail: sheliaona@xatu.edu.cn; yangyaxiong@xatu.edu.cn; honggepan@zju.edu.cn
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1	11	11	10	#/texts/10	text	metadata	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:0	body_zone	column_1_of_2	1	2	p1:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 670.7, 89.07, 7.2]	E-mail: gaomx@zju.edu.cn	E-mail: gaomx@zju.edu.cn
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1	20	14	13	#/texts/19	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p1:body_region:0	bottom_margin	column_1_of_2	1	2	p1:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
1	14	15	14	#/texts/13	text	body	True	None	body	body						True	p1:body_region:1	front_matter	column_2_of_2	2	2	p1:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[384.63, 236.89, 162.26, 271.46]	decades. However, current commercialized LIBs cannot fulfill the demand for high energy density and power density with the rapid development of modern industrial society. [ 1-4] As the critical component determining the…	decades. However, current commercialized LIBs cannot fulfill the demand for high energy density and power density with the rapid development of modern industrial society. [ 1-4] As the critical component determining the…
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1	16	17	16	#/texts/15	text	body	True	None	body	body						True	p1:body_region:1	body_zone	column_2_of_2	2	2	p1:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 532.79, 240.95, 19.4]	Although LMROs have advantages in capacity and cost, several inherent drawbacks still hinder the road to commercialization.	Although LMROs have advantages in capacity and cost, several inherent drawbacks still hinder the road to commercialization.
1	17	18	17	#/texts/16	text	affiliation	False	low	outside_body_flow_affiliation_block	outside_body_flow_affiliation_block						True	p1:body_region:0	body_zone	column_2_of_2	2	2	p1:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 570.99, 108.48, 34.1]	P. Gao, X. Yu Department of Materials Science Fudan University Shanghai 200433, China	P. Gao, X. Yu Department of Materials Science Fudan University Shanghai 200433, China
1	18	19	18	#/texts/17	text	unknown_text	False	medium	outside_body_flow	outside_body_flow						True	p1:body_region:0	body_zone	column_2_of_2	2	2	p1:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 608.86, 17.6, 7.2]	Y. Lin	Y. Lin
1	19	20	19	#/texts/18	text	affiliation	False	low	outside_body_flow_affiliation_block	outside_body_flow_affiliation_block						True	p1:body_region:1	body_zone	column_2_of_2	2	2	p1:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 617.82, 214.9, 25.13]	Hefei National Laboratory for Physical Sciences at the Microscale University of Science and Technology of China Hefei 230026, China	Hefei National Laboratory for Physical Sciences at the Microscale University of Science and Technology of China Hefei 230026, China
1	21	21	20	#/texts/20	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p1:body_region:0	bottom_margin	column_2_of_2	2	2	p1:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[266.69, 744.38, 64.3, 8.02]	2401645 (1 of 13)	2401645 (1 of 13)
1	22	22	21	#/texts/21	page_footer	page_footer	False	low	first_page_metadata	first_page_metadata						True	p1:body_region:1	bottom_margin	column_2_of_2	2	2	p1:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[469.66, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
2	2	1	22	#/texts/23	text	page_margin_header	False	low	page_margin_header	page_margin_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	[47.98, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
2	3	2	23	#/texts/24	text	body	True	None	body	body						True	p2:body_region:0	front_matter	column_1_of_2	1	2	p2:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 76.43, 240.97, 216.67]	First, irreversible oxygen release substantially damages the lattice crystal and facilitates transition metal migration to neighboring Li slabs, engendering layered-spinel phase transition, resulting in cathode degradat…	First, irreversible oxygen release substantially damages the lattice crystal and facilitates transition metal migration to neighboring Li slabs, engendering layered-spinel phase transition, resulting in cathode degradat…
2	4	3	24	#/texts/25	text	body	True	None	body	body						True	p2:body_region:0	front_matter	column_1_of_2	1	2	p2:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 295.6, 240.94, 63.24]	Various strategies have been employed to solve the drawbacks of LMROs, including surface modification, [28,29] element doping, [30,31] structure design, [32,33] binder readjustment, [34,35] and electrolyte optimization.…	Various strategies have been employed to solve the drawbacks of LMROs, including surface modification, [28,29] element doping, [30,31] structure design, [32,33] binder readjustment, [34,35] and electrolyte optimization.…
2	5	4	25	#/texts/26	text	body	True	None	body	body						True	p2:body_region:0	front_matter	column_1_of_2	1	2	p2:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.97, 361.36, 240.96, 271.46]	The redox couple strategy has been proven to be a facile and efficacious approach to inhibit oxygen release and achieve outstanding electrochemical stability via chemically reducing the peroxide ion O2 2 -back to stable…	The redox couple strategy has been proven to be a facile and efficacious approach to inhibit oxygen release and achieve outstanding electrochemical stability via chemically reducing the peroxide ion O2 2 -back to stable…
2	6	5	26	#/texts/27	section_header	body_heading	False	low	body_heading	body_heading						True	p2:body_region:0	body_zone	column_1_of_2	1	2	p2:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 649.05, 122.45, 10.25]	2. Results and Discussion	2. Results and Discussion
2	7	6	27	#/texts/28#prov0	text	body	True	None	body	body						True	p2:body_region:0	bottom_margin	column_1_of_2	1	2	p2:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 668.41, 240.96, 52.28]	The X-ray diffraction (XRD) patterns shown in Figure S1 (Supporting Information) show that a new diffraction peak appears when the amount of CuPc added increases ( ≥ 5 wt%), but the LMRO and CuPc-enhanced electrodes dis…	The X-ray diffraction (XRD) patterns shown in Figure S1 (Supporting Information) show that a new diffraction peak appears when the amount of CuPc added increases ( ≥ 5 wt%), but the LMRO and CuPc-enhanced electrodes dis…
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2	1	8	29	#/texts/22	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	column_2_of_2	2	2	p2:top_margin:column_2_of_2:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
2	9	9	30	#/texts/29	text	page_margin_header	False	low	page_margin_header	page_margin_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	[456.8, 50.12, 87.21, 8.02]	www.small-journal.com	
2	8	10	31	#/texts/28#prov1	text	back_matter_heading	False	low	early_back_matter_heading	early_back_matter_heading						True	p2:body_region:1	front_matter	column_2_of_2	2	2	p2:front_matter:column_2_of_2:white	[255, 255, 255]	white	False	False	[303.09, 76.43, 240.96, 129.0]	Supporting Information) further confirm that the lattice parameters of LMRO and LMRO@7CuPc electrodes keep well, indicating preparation process does not damage the bulk structure. Figure 1 a-c shows the high-angle annul…	Supporting Information) further confirm that the lattice parameters of LMRO and LMRO@7CuPc electrodes keep well, indicating preparation process does not damage the bulk structure. Figure 1 a-c shows the high-angle annul…
2	10	11	32	#/texts/30#prov0	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p2:body_region:1	bottom_margin	column_2_of_2	2	2	p2:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[303.09, 207.94, 240.96, 512.55]	The electrochemical performances of CuPc-enhanced electrodes in the voltage window of 2.0-4.8 V at 0.1 C and 1 C (1C = 200 mA g -1 ) are shown in Figure 2 , and corresponding data are summarized in Table S2 (Supporting …	The electrochemical performances of CuPc-enhanced electrodes in the voltage window of 2.0-4.8 V at 0.1 C and 1 C (1C = 200 mA g -1 ) are shown in Figure 2 , and corresponding data are summarized in Table S2 (Supporting …
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2	13	13	34	#/texts/33	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p2:body_region:1	bottom_margin	column_2_of_2	2	2	p2:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[466.82, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
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3	4	4	38	#/texts/36	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p3:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 344.36, 496.04, 16.67]	Figure 1. a) HAADF-STEM image of the LMRO@7CuPc electrode. b) Atomic-resolution HAADF-STEM image of the site A in (a). c) Atomic-resolution HAADF-STEM image of the site B in (a). d) STEM-EDS mapping of the LMRO@7CuPc el…	Figure 1. a) HAADF-STEM image of the LMRO@7CuPc electrode. b) Atomic-resolution HAADF-STEM image of the site A in (a). c) Atomic-resolution HAADF-STEM image of the site B in (a). d) STEM-EDS mapping of the LMRO@7CuPc el…
3	1	5	39	#/texts/30#prov1	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p3:body_region:0	page_body	column_1_of_2	1	2	p3:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 383.18, 240.96, 293.38]	vious that LMRO electrode shows extremely fast capacity fading from 214.2 to 119.6 mAh g -1 , with a poor retention of only 55.8% after 500 cycles, and the discharge curves (Figure 2d) show severe voltage decay with a v…	vious that LMRO electrode shows extremely fast capacity fading from 214.2 to 119.6 mAh g -1 , with a poor retention of only 55.8% after 500 cycles, and the discharge curves (Figure 2d) show severe voltage decay with a v…
3	6	6	40	#/texts/38#prov0	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p3:body_region:0	bottom_margin	column_1_of_2	1	2	p3:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 679.07, 240.97, 41.32]	Furthermore, other metal phthalocyanine derivatives are investigated using as redox couple in LMRO as well, including phthalocyanine (Pc), nickel phthalocyanine (NiPc), cooper phthalocyanine (CoPc), manganese phthalocya…	Furthermore, other metal phthalocyanine derivatives are investigated using as redox couple in LMRO as well, including phthalocyanine (Pc), nickel phthalocyanine (NiPc), cooper phthalocyanine (CoPc), manganese phthalocya…
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3	7	8	42	#/texts/38#prov1	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p3:body_region:1	page_body	column_2_of_2	2	2	p3:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 383.18, 240.97, 315.29]	phthalocyanine (FePc) and zinc phthalocyanine (ZnPc). All the additives are added into LMRO and the electrode preparation are same as CuPc enhanced electrodes, and the corresponding electrochemical performance data are …	phthalocyanine (FePc) and zinc phthalocyanine (ZnPc). All the additives are added into LMRO and the electrode preparation are same as CuPc enhanced electrodes, and the corresponding electrochemical performance data are …
3	8	9	43	#/texts/39#prov0	text	unknown_text	False	high	inside_back_matter	inside_back_matter						True	p3:body_region:1	bottom_margin	column_2_of_2	2	2	p3:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 700.99, 240.94, 19.4]	According to the above discussion of electrochemical performance, we speculate that there is a synergetic effect on Cu and	According to the above discussion of electrochemical performance, we speculate that there is a synergetic effect on Cu and
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3	11	11	45	#/texts/42	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p3:body_region:1	bottom_margin	column_2_of_2	2	2	p3:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[469.66, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
4	1	1	46	#/texts/39#prov1	text	page_margin_header	False	low	page_margin_header	page_margin_header						False	None	top_margin	left	None	None	p4:top_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
4	3	2	47	#/texts/44	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	[47.98, 669.89, 496.06, 27.59]	Figure 2. Electrochemical performance of LMRO and CuPc-enhanced electrodes. a) Initial charge-discharge profiles at 20 mA g -1 . b) Cycling performance at 20 mA g -1 . c) Cycling performance at 200 mA g -1 . d,e) Voltag…	Figure 2. Electrochemical performance of LMRO and CuPc-enhanced electrodes. a) Initial charge-discharge profiles at 20 mA g -1 . b) Cycling performance at 20 mA g -1 . c) Cycling performance at 200 mA g -1 . d,e) Voltag…
4	5	3	48	#/texts/46	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left	None	None	p4:bottom_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
4	6	4	49	#/texts/47	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	[263.85, 744.38, 64.3, 8.02]	2401645 (4 of 13)	2401645 (4 of 13)
4	4	5	50	#/texts/45	text	page_margin_header	False	low	page_margin_header	page_margin_header						False	None	top_margin	right	None	None	p4:top_margin:right:white	[255, 255, 255]	white	False	False	[456.8, 50.12, 87.21, 8.02]	www.small-journal.com	
4	7	6	51	#/texts/48	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	right	None	None	p4:bottom_margin:right:white	[255, 255, 255]	white	False	False	[466.82, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
4	2	7	52	#/texts/43	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p4:top_margin:right:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
5	1	1	53	#/texts/39#prov2	text	page_margin_header	False	low	page_margin_header	page_margin_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	[50.81, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
5	2	2	54	#/texts/39#prov3	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p5:body_region:0	bottom_margin	column_1_of_2	1	2	p5:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 76.43, 240.97, 644.06]	N elements of CuPc thus realizing the best cycling stability. To elucidate the mechanism of improved cycling stability and redox behavior of oxygen, X-ray photoelectron spectroscopy (XPS) measurement is conducted for LM…	N elements of CuPc thus realizing the best cycling stability. To elucidate the mechanism of improved cycling stability and redox behavior of oxygen, X-ray photoelectron spectroscopy (XPS) measurement is conducted for LM…
5	9	3	55	#/texts/54	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p5:body_region:0	bottom_margin	column_1_of_2	1	2	p5:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
5	4	4	56	#/texts/49	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	column_2_of_2	2	2	p5:top_margin:column_2_of_2:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
5	5	5	57	#/texts/50	text	page_margin_header	False	low	page_margin_header	page_margin_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	[459.64, 50.12, 87.21, 8.02]	www.small-journal.com	
5	3	6	58	#/texts/39#prov4	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p5:body_region:1	page_body	column_2_of_2	2	2	p5:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 76.42, 240.96, 41.32]	and N ensures the high reaction activity of N element to reduce O2 2 -of LMRO in time, and the effect of Cu is also maintained in the next cycling (Figure S7, Supporting Information), thus realizing the high performance…	and N ensures the high reaction activity of N element to reduce O2 2 -of LMRO in time, and the effect of Cu is also maintained in the next cycling (Figure S7, Supporting Information), thus realizing the high performance…
5	6	7	59	#/texts/51	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p5:body_region:1	page_body	column_2_of_2	2	2	p5:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 120.27, 240.96, 139.95]	Operando differential electrochemical mass spectrometry (DEMS) was performed to evaluate the gas evolution during the initial cycle. As depicted in Figure 3e, the LMRO electrode displays an obvious O 2 and CO2 generatio…	Operando differential electrochemical mass spectrometry (DEMS) was performed to evaluate the gas evolution during the initial cycle. As depicted in Figure 3e, the LMRO electrode displays an obvious O 2 and CO2 generatio…
5	7	8	60	#/texts/52	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p5:body_region:1	page_body	column_2_of_2	2	2	p5:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 262.73, 240.96, 271.46]	Except for the effect on the LMRO surface, the CuPc strategy enhances the oxygen redox in bulk as well. LMRO and LMRO@7CuPc electrodes in different SOC were etched by Ar ion for 20 min to collect the bulk information of…	Except for the effect on the LMRO surface, the CuPc strategy enhances the oxygen redox in bulk as well. LMRO and LMRO@7CuPc electrodes in different SOC were etched by Ar ion for 20 min to collect the bulk information of…
5	8	9	61	#/texts/53	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p5:body_region:1	bottom_margin	column_2_of_2	2	2	p5:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 536.71, 240.97, 183.79]	To investigate the structural degradation during cycling, XRD patterns of LMRO and LMRO@7CuPc at selected cycles are compared and shown in Figure S11 and Table S1 (Supporting Information). During the cycling, the diffra…	To investigate the structural degradation during cycling, XRD patterns of LMRO and LMRO@7CuPc at selected cycles are compared and shown in Figure S11 and Table S1 (Supporting Information). During the cycling, the diffra…
5	10	10	62	#/texts/55	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	[266.69, 744.38, 64.3, 8.02]	2401645 (5 of 13)	2401645 (5 of 13)
5	11	11	63	#/texts/56	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p5:body_region:1	bottom_margin	column_2_of_2	2	2	p5:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[469.66, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
6	2	1	64	#/texts/58	section_header	metadata	False	low	document_web_address	document_web_address						False	None	top_margin	left	None	None	p6:top_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
6	3	2	65	#/texts/59	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	full	None	None	p6:page_body:full:white	[255, 255, 255]	white	False	False	[47.98, 634.36, 496.06, 35.6]	Figure 3. The XPS spectra for LMRO@7CuPc electrode during the first cycle of a) N 1s spectra, b) Cu 2p Spectra. c) Relative atomic ratio of N re and N ox during the first cycle of LMRO@7CuPc electrode. d) Relative atomi…	Figure 3. The XPS spectra for LMRO@7CuPc electrode during the first cycle of a) N 1s spectra, b) Cu 2p Spectra. c) Relative atomic ratio of N re and N ox during the first cycle of LMRO@7CuPc electrode. d) Relative atomi…
6	5	3	66	#/texts/61	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left	None	None	p6:bottom_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
6	6	4	67	#/texts/62	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left_crossing	None	None	p6:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[263.85, 744.38, 64.3, 8.02]	2401645 (6 of 13)	2401645 (6 of 13)
6	4	5	68	#/texts/60	text	page_margin_header	False	low	page_margin_header	page_margin_header						False	None	top_margin	right	None	None	p6:top_margin:right:white	[255, 255, 255]	white	False	False	[456.8, 50.12, 87.21, 8.02]	www.small-journal.com	
6	7	6	69	#/texts/63	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	right	None	None	p6:bottom_margin:right:white	[255, 255, 255]	white	False	False	[466.82, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
6	1	7	70	#/texts/57	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p6:top_margin:right:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
7	2	1	71	#/texts/65	text	page_margin_header	False	low	page_margin_header	page_margin_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	[50.81, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
7	1	2	72	#/texts/64	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	column_2_of_2	2	2	p7:top_margin:column_2_of_2:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
7	4	3	73	#/texts/67	text	page_margin_header	False	low	page_margin_header	page_margin_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	[459.64, 50.12, 87.21, 8.02]	www.small-journal.com	
7	3	4	74	#/texts/66	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	column_1_of_2	1	2	p7:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 431.36, 496.05, 35.6]	Figure 4. a) HAADF-STEM image of LMRO electrode after 500 cycles. b) Atomic-resolution HAADF-STEM image of site A in (a). Inset: FFT image of Figure b. c) Atomic-resolution HAADF-STEM image of site B in (a). d). HAADF-S…	Figure 4. a) HAADF-STEM image of LMRO electrode after 500 cycles. b) Atomic-resolution HAADF-STEM image of site A in (a). Inset: FFT image of Figure b. c) Atomic-resolution HAADF-STEM image of site B in (a). d). HAADF-S…
7	5	5	75	#/texts/68	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p7:body_region:0	page_body	column_1_of_2	1	2	p7:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 492.77, 240.95, 194.74]	The better structure stability is also proven by surface-sensitive Raman spectrometry as shown in Figure S12 (Supporting Information). For the pristine LMRO electrode, the peak located at 415 cm -1 is ascribed to A 1g v…	The better structure stability is also proven by surface-sensitive Raman spectrometry as shown in Figure S12 (Supporting Information). For the pristine LMRO electrode, the peak located at 415 cm -1 is ascribed to A 1g v…
7	6	6	76	#/texts/69#prov0	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p7:body_region:0	bottom_margin	column_1_of_2	1	2	p7:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 690.03, 240.95, 30.36]	Furthermore, Atomic-resolution HAADF-STEM is conducted to investigate the structure evolution on the nanoscale. As shown in Figure 4 a, the LMRO electrode shows a huge morphology	Furthermore, Atomic-resolution HAADF-STEM is conducted to investigate the structure evolution on the nanoscale. As shown in Figure 4 a, the LMRO electrode shows a huge morphology
7	8	7	77	#/texts/70	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p7:body_region:0	bottom_margin	column_1_of_2	1	2	p7:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
7	7	8	78	#/texts/69#prov1	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p7:body_region:1	bottom_margin	column_2_of_2	2	2	p7:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 492.77, 240.96, 227.62]	change in that the whole particle becomes loose and the surface region becomes rough with jagged edges due to a side reaction with electrolyte. [ 20] It is worse that lots of nanovoids distribute throughout the particle…	change in that the whole particle becomes loose and the surface region becomes rough with jagged edges due to a side reaction with electrolyte. [ 20] It is worse that lots of nanovoids distribute throughout the particle…
7	9	9	79	#/texts/71	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	[266.69, 744.38, 64.3, 8.02]	2401645 (7 of 13)	2401645 (7 of 13)
7	10	10	80	#/texts/72	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p7:body_region:1	bottom_margin	column_2_of_2	2	2	p7:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[469.66, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
8	5	1	81	#/texts/75	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p8:body_region:0	page_body	left_crossing	None	None	p8:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[47.98, 339.45, 240.96, 337.21]	Electron energy loss spectrometry (EELS) is conducted to evaluate the stability of oxygen lattice and valence states evolution of transition metal, and the line scanning spectra from surface to bulk is depicted in Figur…	Electron energy loss spectrometry (EELS) is conducted to evaluate the stability of oxygen lattice and valence states evolution of transition metal, and the line scanning spectra from surface to bulk is depicted in Figur…
8	4	2	82	#/texts/74	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p8:body_region:0	page_body	left_crossing	None	None	p8:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[47.98, 131.23, 240.95, 205.7]	Further observation on the surface site C reveals that the CuPc coating layer remains yet and the surface region keeps a welllayered structure (Figure 4e). In the inner bulk (site D, Figure f), LMRO@7CuPc retains an int…	Further observation on the surface site C reveals that the CuPc coating layer remains yet and the surface region keeps a welllayered structure (Figure 4e). In the inner bulk (site D, Figure f), LMRO@7CuPc retains an int…
8	2	3	83	#/texts/69#prov3	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p8:body_region:0	page_body	left_crossing	None	None	p8:page_body:left_crossing:white	[255, 255, 255]	white	False	False	[47.98, 75.38, 240.97, 53.33]	release or eliminating the surface O 2 2 -will shut down the global oxygen migration and contribute to excellent cycling performance.According to the root origin of oxygen release, CuPc redox couple has been proven to b…	release or eliminating the surface O 2 2 -will shut down the global oxygen migration and contribute to excellent cycling performance.According to the root origin of oxygen release, CuPc redox couple has been proven to b…
8	1	4	84	#/texts/69#prov2	text	page_margin_header	False	low	page_margin_header	page_margin_header						True	p8:body_region:0	top_margin	left	None	None	p8:top_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
8	9	5	85	#/texts/78	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p8:body_region:0	bottom_margin	left	None	None	p8:bottom_margin:left:white	[255, 255, 255]	white	False	False	[47.98, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
8	6	6	86	#/texts/76#prov0	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						True	p8:body_region:0	bottom_margin	left_crossing	None	None	p8:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[47.98, 679.17, 240.95, 41.32]	Another important effect of CuPc modification is that LMRO@7CuPc forms a more stable, uniform, and robust cathode-electrolyte interface shielding the cathode against electrolyte side reactions and suppressing the transi…	Another important effect of CuPc modification is that LMRO@7CuPc forms a more stable, uniform, and robust cathode-electrolyte interface shielding the cathode against electrolyte side reactions and suppressing the transi…
8	10	7	87	#/texts/79	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left_crossing	None	None	p8:bottom_margin:left_crossing:white	[255, 255, 255]	white	False	False	[263.85, 744.38, 64.3, 8.02]	2401645 (8 of 13)	2401645 (8 of 13)
8	7	8	88	#/texts/76#prov1	text	metadata	False	medium	inside_back_matter	inside_back_matter						False	None	bottom_margin	right_crossing	None	None	p8:bottom_margin:right_crossing:white	[255, 255, 255]	white	False	False	[303.09, 76.43, 240.96, 644.06]	solution. XPS is conducted to investigate surface compositions of the formed CEI layer for electrodes after 500 cycles as shown in Figure 6 a. The C 1s spectra of both electrodes have four peaks ascribed to C ─ C, C ─ O…	solution. XPS is conducted to investigate surface compositions of the formed CEI layer for electrodes after 500 cycles as shown in Figure 6 a. The C 1s spectra of both electrodes have four peaks ascribed to C ─ C, C ─ O…
8	8	9	89	#/texts/77	text	page_margin_header	False	low	page_margin_header	page_margin_header						False	None	top_margin	right	None	None	p8:top_margin:right:white	[255, 255, 255]	white	False	False	[456.8, 50.12, 87.21, 8.02]	www.small-journal.com	
8	11	10	90	#/texts/80	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	right	None	None	p8:bottom_margin:right:white	[255, 255, 255]	white	False	False	[466.82, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
8	3	11	91	#/texts/73	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	right	None	None	p8:top_margin:right:off_white	[247, 247, 247]	off_white	False	False	[578.97, 15.65, 4.54, 751.19]	16136829, 2024, 37, Downloaded from https://onlinelibrary.wiley.com/doi/10.1002/smll.202401645 by Jilin University, Wiley Online Library on [12/07/2026]. See the Terms and Conditions (https://onlinelibrary.wiley.com/ter…	
9	1	1	92	#/texts/81	page_header	page_header	False	low	docling_page_header	docling_page_header						False	None	top_margin	left	None	None	p9:top_margin:left:white	[255, 255, 255]	white	False	False	[50.81, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
9	3	2	93	#/texts/83	caption	caption	False	low	outside_body_flow_caption	outside_body_flow_caption						False	None	page_body	full	None	None	p9:page_body:full:white	[255, 255, 255]	white	False	False	[50.81, 671.35, 496.07, 35.6]	Figure 5. a-c) EELS line scanning from the surface into the bulk of the LMRO electrode after 500 cycles. d-f) EELS line scanning from the surface into the bulk of LMRO@7CuPc electrode after 500 cycles. The corresponding…	Figure 5. a-c) EELS line scanning from the surface into the bulk of the LMRO electrode after 500 cycles. d-f) EELS line scanning from the surface into the bulk of LMRO@7CuPc electrode after 500 cycles. The corresponding…
9	5	3	94	#/texts/85	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	left	None	None	p9:bottom_margin:left:white	[255, 255, 255]	white	False	False	[50.81, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
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10	6	3	101	#/texts/91	text	page_margin_header	False	low	page_margin_header	page_margin_header						False	None	top_margin	column_2_of_2	2	2	p10:top_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[456.8, 50.12, 87.21, 8.02]	www.small-journal.com	
10	5	4	102	#/texts/90	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	[47.98, 578.25, 496.07, 45.07]	Figure 6. a) C 1s, O 1s, P 2p, and F 1s high-resolution XPS spectra of LMRO (top) and LMRO@7CuPc (bottom) after 500 cycles. b) TOF-SIMS investigations CEI structure after 500 cycles. The mapping for LiF -, C2 HO -, C2 H…	Figure 6. a) C 1s, O 1s, P 2p, and F 1s high-resolution XPS spectra of LMRO (top) and LMRO@7CuPc (bottom) after 500 cycles. b) TOF-SIMS investigations CEI structure after 500 cycles. The mapping for LiF -, C2 HO -, C2 H…
10	1	5	103	#/texts/76#prov2	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						False	None	bottom_margin	column_1_of_2	1	2	p10:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 646.19, 240.97, 74.2]	metal dissolution quantificationally. The dissolution ratios of Ni, Co, and Mn for LMRO electrode are as high as 1.177, 0.831, and 1.937 wt%, respectively, while the corresponding dissolution ratios of TM elements for L…	metal dissolution quantificationally. The dissolution ratios of Ni, Co, and Mn for LMRO electrode are as high as 1.177, 0.831, and 1.937 wt%, respectively, while the corresponding dissolution ratios of TM elements for L…
10	7	6	104	#/texts/92	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						False	None	bottom_margin	column_1_of_2	1	2	p10:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
10	2	7	105	#/texts/76#prov3	text	body_candidate_excluded	False	high	inside_back_matter	inside_back_matter						False	None	bottom_margin	column_2_of_2	2	2	p10:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[303.09, 646.19, 240.95, 74.2]	of cationic redox reaction thus maintaining electrode capacity. The above results demonstrate that the CuPc strategy can effectively restrain the decomposition of electrolytes and induce the formation of a more uniform …	of cationic redox reaction thus maintaining electrode capacity. The above results demonstrate that the CuPc strategy can effectively restrain the decomposition of electrolytes and induce the formation of a more uniform …
10	8	8	106	#/texts/93	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	[261.61, 744.38, 68.79, 8.02]	2401645 (10 of 13)	2401645 (10 of 13)
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11	2	1	108	#/texts/96	text	page_margin_header	False	low	page_margin_header	page_margin_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	[50.81, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
11	3	2	109	#/texts/97	section_header	body_heading	False	low	body_heading	body_heading						True	p11:body_region:0	body_zone	column_1_of_2	1	2	p11:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 76.58, 64.45, 10.25]	3. Conclusion	3. Conclusion
11	4	3	110	#/texts/98	text	body	True	None	body	body						True	p11:body_region:0	body_zone	column_1_of_2	1	2	p11:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 95.93, 240.96, 282.43]	In summary, we first develop CuPc as a redox couple to LMRO cathode by a facile and effective method and realize outstanding electrochemical performance with improved capacity and voltage stability. The LMRO@7CuPc maint…	In summary, we first develop CuPc as a redox couple to LMRO cathode by a facile and effective method and realize outstanding electrochemical performance with improved capacity and voltage stability. The LMRO@7CuPc maint…
11	5	4	111	#/texts/99	section_header	body_heading	False	low	body_heading	body_heading						True	p11:body_region:0	body_zone	column_1_of_2	1	2	p11:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 410.45, 111.91, 10.25]	4. Experimental Section	4. Experimental Section
11	6	5	112	#/texts/100	text	body	True	None	body	body						True	p11:body_region:0	body_zone	column_1_of_2	1	2	p11:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 429.0, 240.96, 111.54]	Synthesis of Samples : The Li 1.2 Ni 0.13 Co 0.13 Mn0.54 O 2 material was synthesized by spray pyrolysis followed by high-temperature calcination. Lithium acetate dihydrate (LiAC · 2H2 O, AR), manganese acetate tetrahyd…	Synthesis of Samples : The Li 1.2 Ni 0.13 Co 0.13 Mn0.54 O 2 material was synthesized by spray pyrolysis followed by high-temperature calcination. Lithium acetate dihydrate (LiAC · 2H2 O, AR), manganese acetate tetrahyd…
11	7	6	113	#/texts/101	text	body	True	None	body	body						True	p11:body_region:0	body_zone	column_1_of_2	1	2	p11:body_zone:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 542.57, 240.97, 158.86]	Preparation of Electrodes : LMRO(1.6 g) and conductive additive Super P (TIMCAL) (0.2 g) were mixed via the ball-milling method in a stainlesssteel ball mill jar (120 mL) adding tungsten carbide balls (108 g) and ethano…	Preparation of Electrodes : LMRO(1.6 g) and conductive additive Super P (TIMCAL) (0.2 g) were mixed via the ball-milling method in a stainlesssteel ball mill jar (120 mL) adding tungsten carbide balls (108 g) and ethano…
11	8	7	114	#/texts/102#prov0	text	body	True	None	body	body						True	p11:body_region:0	bottom_margin	column_1_of_2	1	2	p11:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 703.48, 240.95, 18.12]	Material Structure Characterizations : XRD analysis was performed on a Mini Flex 600 X-ray diffractometer (Rigaku, Japan) with Cu-K /u1D6FC radiation	Material Structure Characterizations : XRD analysis was performed on a Mini Flex 600 X-ray diffractometer (Rigaku, Japan) with Cu-K /u1D6FC radiation
11	25	8	115	#/texts/118	page_footer	page_footer	False	low	docling_page_footer	docling_page_footer						True	p11:body_region:0	bottom_margin	column_1_of_2	1	2	p11:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[50.81, 745.71, 70.17, 6.3]	Small 2024 , 20 , 2401645	Small 2024 , 20 , 2401645
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11	10	10	117	#/texts/103	text	page_margin_header	False	low	page_margin_header	page_margin_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	[459.64, 50.12, 87.21, 8.02]	www.small-journal.com	
11	9	11	118	#/texts/102#prov1	text	body	True	None	body	body						True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 77.35, 240.97, 205.96]	operating at a voltage of 40 kV and current of 15 mA with 2 /u1D703 ranging from 10 ° to 60 ° at a scan rate of 1 ° min -1 . Rietveld refinements of the XRD data were carried out by a General Structure Analysis System (…	operating at a voltage of 40 kV and current of 15 mA with 2 /u1D703 ranging from 10 ° to 60 ° at a scan rate of 1 ° min -1 . Rietveld refinements of the XRD data were carried out by a General Structure Analysis System (…
11	11	12	119	#/texts/104	text	body	True	None	body	body						True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.92, 285.35, 240.97, 111.54]	Electrochemical Measurements : The electrochemical performance was characterized by 2025 coin-type cells. These cells were assembled in an Arfilled glove box (water and oxygen content < 0.1 ppm) with lithium metal foil …	Electrochemical Measurements : The electrochemical performance was characterized by 2025 coin-type cells. These cells were assembled in an Arfilled glove box (water and oxygen content < 0.1 ppm) with lithium metal foil …
11	12	13	120	#/texts/105	section_header	back_matter_heading	False	low	back_matter_heading	back_matter_heading					stop_trigger	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 412.38, 112.02, 10.25]	Supporting Information	Supporting Information
11	13	14	121	#/texts/106	text	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 431.16, 240.96, 16.67]	Supporting Information is available from the Wiley Online Library or from the author.	Supporting Information is available from the Wiley Online Library or from the author.
11	14	15	122	#/texts/107	section_header	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 463.33, 92.58, 10.25]	Acknowledgements	Acknowledgements
11	15	16	123	#/texts/108	text	back_matter_text	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 482.11, 240.97, 54.52]	Z.J.W. and C.H.Y. contributed equally to this work. The authors gratefully acknowledge the financial support from the National Key Research and Development Program of China (2022YFB2502000), the National Natural Science…	Z.J.W. and C.H.Y. contributed equally to this work. The authors gratefully acknowledge the financial support from the National Key Research and Development Program of China (2022YFB2502000), the National Natural Science…
11	16	17	124	#/texts/109	section_header	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 552.14, 87.65, 10.25]	Conflict of Interest	Conflict of Interest
11	17	18	125	#/texts/110	text	back_matter_text	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 570.91, 139.61, 7.2]	The authors declare no conflict of interest.	The authors declare no conflict of interest.
11	18	19	126	#/texts/111	section_header	back_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 593.62, 128.2, 10.25]	Data Availability Statement	Data Availability Statement
11	19	20	127	#/texts/112	text	metadata	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 612.4, 240.92, 16.66]	The data that support the findings of this study are available from the corresponding author upon reasonable request.	The data that support the findings of this study are available from the corresponding author upon reasonable request.
11	20	21	128	#/texts/113	section_header	front_matter_heading	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 644.57, 45.87, 10.25]	Keywords	Keywords
11	21	22	129	#/texts/114	text	unknown_text	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[305.93, 663.35, 240.92, 16.66]	copper phthalocyanine, Cu-N synergism, cycling stability, Li- and Mn-rich layered oxide, redox couple	copper phthalocyanine, Cu-N synergism, cycling stability, Li- and Mn-rich layered oxide, redox couple
11	22	23	130	#/texts/115	text	metadata	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[466.44, 694.23, 80.44, 7.2]	Received: March 2, 2024	Received: March 2, 2024
11	23	24	131	#/texts/116	text	metadata	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	body_zone	column_2_of_2	2	2	p11:body_zone:column_2_of_2:white	[255, 255, 255]	white	False	False	[471.82, 703.7, 75.05, 7.2]	Revised: April 27, 2024	Revised: April 27, 2024
11	24	25	132	#/texts/117	text	metadata	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	bottom_margin	column_2_of_2	2	2	p11:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[443.73, 713.17, 103.15, 7.2]	Published online: May 19, 2024	Published online: May 19, 2024
11	26	26	133	#/texts/119	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	p11:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[264.44, 744.38, 68.79, 8.02]	2401645 (11 of 13)	2401645 (11 of 13)
11	27	27	134	#/texts/120	page_footer	page_footer	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	True	p11:body_region:1	bottom_margin	column_2_of_2	2	2	p11:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[469.66, 745.82, 77.21, 6.3]	©2024 Wiley-VCH GmbH	©2024 Wiley-VCH GmbH
12	2	1	135	#/texts/122	section_header	metadata	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	top_margin	column_1_of_2	1	2	p12:top_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[47.98, 50.12, 120.78, 8.02]	www.advancedsciencenews.com	
12	3	2	136	#/texts/123	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	column_1_of_2	1	2	p12:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[51.96, 85.52, 236.96, 17.17]	J. Xu, J. Zhang, T. P. Pollard, Q. Li, S. Tan, S. Hou, H. Wan, F. Chen, H. He, E. Hu, Nature 2023 , 614 , 694.	J. Xu, J. Zhang, T. P. Pollard, Q. Li, S. Tan, S. Hou, H. Wan, F. Chen, H. He, E. Hu, Nature 2023 , 614 , 694.
12	4	3	137	#/texts/124	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	column_1_of_2	1	2	p12:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[51.96, 105.44, 236.95, 17.17]	J. Xu, X. Cai, S. Cai, Y . Shao, C. Hu, S. Lu, S. Ding, Energy & Environmental Materials 2023 , 6 , e12450.	J. Xu, X. Cai, S. Cai, Y . Shao, C. Hu, S. Lu, S. Ding, Energy & Environmental Materials 2023 , 6 , e12450.
12	5	4	138	#/texts/125	list_item	reference	False	low	after_back_matter_stop	after_back_matter_stop					after_stop	False	None	page_body	column_1_of_2	1	2	p12:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[51.96, 125.37, 234.83, 7.2]	Z. Cui, A. Manthiram, Angew. Chem., Int. Ed. 2023 , 62 , e202307243.	Z. Cui, A. Manthiram, Angew. Chem., Int. Ed. 2023 , 62 , e202307243.
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