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	10	11	10	#/texts/9	list_item	body	True	None	recovered_body_same_page_outside_flow	recovered_body_same_page_outside_flow						False	None	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 327.92, 133.2, 26.17]	 Nano-CoF2 is fi rstly coated on Li1.2Ni0.2Mn0.6O2 via a wet chemistry method.	 Nano-CoF2 is fi rstly coated on Li1.2Ni0.2Mn0.6O2 via a wet chemistry method.	 Nano-CoF2 is fi rstly coated on Li1.2Ni0.2Mn0.6O2 via a wet chemistry method.	 Nano-CoF2 is fi rstly coated on Li1.2Ni0.2Mn0.6O2 via a wet chemistry method.
1	11	12	11	#/texts/10	list_item	body	True	None	recovered_body_outside_flow	recovered_body_outside_flow						False	None	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 356.69, 133.16, 26.1]	 0.5% CoF2-coated sample delivers the improved initial coulombic ef fi ciency of 86.2%.	 0.5% CoF2-coated sample delivers the improved initial coulombic ef fi ciency of 86.2%.	 0.5% CoF2-coated sample delivers the improved initial coulombic ef fi ciency of 86.2%.	 0.5% CoF2-coated sample delivers the improved initial coulombic ef fi ciency of 86.2%.
1	12	13	12	#/texts/11	list_item	body	True	None	recovered_body_outside_flow	recovered_body_outside_flow						False	None	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 385.37, 133.19, 26.1]	 Excellent stability of capacity and voltage are observed for 1.0% CoF2coating.	 Excellent stability of capacity and voltage are observed for 1.0% CoF2coating.	 Excellent stability of capacity and voltage are observed for 1.0% CoF2coating.	 Excellent stability of capacity and voltage are observed for 1.0% CoF2coating.
1	13	14	13	#/texts/12	list_item	body	True	None	recovered_body_outside_flow	recovered_body_outside_flow						False	None	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 414.12, 133.22, 26.04]	 The mechanisms of serious fading of capacity and voltage are discussed in details.	 The mechanisms of serious fading of capacity and voltage are discussed in details.	 The mechanisms of serious fading of capacity and voltage are discussed in details.	 The mechanisms of serious fading of capacity and voltage are discussed in details.
1	14	15	14	#/texts/13	list_item	body	True	None	recovered_body_outside_flow	recovered_body_outside_flow						False	None	front_matter	column_1_of_2	1	2	p1:front_matter:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 442.8, 133.26, 26.04]	 Structure transition is suppressed by CoF2 nano-coating evidenced by TEM analysis.	 Structure transition is suppressed by CoF2 nano-coating evidenced by TEM analysis.	 Structure transition is suppressed by CoF2 nano-coating evidenced by TEM analysis.	 Structure transition is suppressed by CoF2 nano-coating evidenced by TEM analysis.
1	26	26	25	#/texts/25#prov0	text	body	True	None	body	body						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	[301.83, 696.57, 251.04, 17.91]	To meet more demanding requirements for portable electronics, electric vehicles and hybrid electric vehicles, rechargeable lithium-	To meet more demanding requirements for portable electronics, electric vehicles and hybrid electric vehicles, rechargeable lithium-	To meet more demanding requirements for portable electronics, electric vehicles and hybrid electric vehicles, rechargeable lithium-	To meet more demanding requirements for portable electronics, electric vehicles and hybrid electric vehicles, rechargeable lithium-
4	3	5	31	#/texts/25#prov3	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 432.89, 20.86, 7.42]	matic	matic	matic	matic
4	4	6	32	#/texts/25#prov4	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[68.26, 432.89, 17.91, 7.42]	view	view	view	view
4	6	7	33	#/texts/25#prov6	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[91.05, 432.89, 7.2, 7.42]	of	of	of	of
4	5	9	35	#/texts/25#prov5	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 443.32, 35.43, 7.42]	discharge	discharge	discharge	discharge
4	8	10	36	#/texts/25#prov8	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[82.37, 443.32, 27.82, 7.42]	process	process	process	process
4	11	17	43	#/texts/25#prov11	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	True	[42.52, 464.24, 115.38, 7.42]	cycle. The oxidation peaks of Ni	cycle. The oxidation peaks of Ni	cycle. The oxidation peaks of Ni	cycle. The oxidation peaks of Ni
4	63	29	55	#/texts/71#prov1	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	True	[485.17, 411.97, 77.41, 7.42]	and coulombic ef fi -	and coulombic ef fi -	and coulombic ef fi -	and coulombic ef fi -
4	65	38	64	#/texts/73#prov0	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[497.82, 432.89, 18.56, 7.42]	layer	layer	layer	layer
4	66	39	65	#/texts/73#prov1	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[521.51, 432.89, 41.07, 7.42]	restraining	restraining	restraining	restraining
4	68	60	86	#/texts/75	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	True	[487.28, 485.16, 75.28, 7.42]	4.8 V. CF-0.1, CF-0.5	4.8 V. CF-0.1, CF-0.5	4.8 V. CF-0.1, CF-0.5	4.8 V. CF-0.1, CF-0.5
4	72	62	88	#/texts/79	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[557.8, 493.54, 3.56, 5.57]	1	1	1	1
4	70	70	96	#/texts/77	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[499.63, 495.65, 53.35, 7.42]	207.2 mAh g	207.2 mAh g	207.2 mAh g	207.2 mAh g
4	74	72	98	#/texts/81	caption	body	True	None	recovered_unbound_docling_caption	recovered_unbound_docling_caption						False	None	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 503.82, 520.07, 31.25]	of CoF2 coating amount in consequence of effective suppression of the loss of O2 by nano-coating layer. And the reduction peaks of Ni 4 þ / Ni 3 þ /Ni 2 þ at approximately 3.75 V as well as the weak reduction 225.3 mAh …	of CoF2 coating amount in consequence of effective suppression of the loss of O2 by nano-coating layer. And the reduction peaks of Ni 4 þ / Ni 3 þ /Ni 2 þ at approximately 3.75 V as well as the weak reduction 225.3 mAh …	of CoF2 coating amount in consequence of effective suppression of the loss of O2 by nano-coating layer. And the reduction peaks of Ni 4 þ / Ni 3 þ /Ni 2 þ at approximately 3.75 V as well as the weak reduction 225.3 mAh g   and 241.0 mAh g   with the capacity retention of 81.5%, 85.2% and 93.0% after 100 cycles, respectively, while much lower discharge capacity of 153.7 mAh g   1 and capacity retention	of CoF2 coating amount in consequence of effective suppression of the loss of O2 by nano-coating layer. And the reduction peaks of Ni 4 þ / Ni 3 þ /Ni 2 þ at approximately 3.75 V as well as the weak reduction 225.3 mAh g   and 241.0 mAh g   with the capacity retention of 81.5%, 85.2% and 93.0% after 100 cycles, respectively, while much lower discharge capacity of 153.7 mAh g   1 and capacity retention
4	75	75	101	#/texts/82	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 535.38, 106.85, 9.53]	peaks corresponding to Mn 4	peaks corresponding to Mn 4	peaks corresponding to Mn 4	peaks corresponding to Mn 4
4	77	76	102	#/texts/84	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[154.03, 535.38, 18.81, 9.53]	/Mn 3	/Mn 3	/Mn 3	/Mn 3
4	80	77	103	#/texts/87	caption	body	True	None	recovered_unbound_docling_caption	recovered_unbound_docling_caption						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 547.92, 251.12, 29.31]	initial discharge process are observed. Besides, the intensity of reduction peaks of Mn 4 þ /Mn 3 þ wanes with increasing the amount of CoF2 coating as a result of the reduction of MnO2 with electro-	initial discharge process are observed. Besides, the intensity of reduction peaks of Mn 4 þ /Mn 3 þ wanes with increasing the amount of CoF2 coating as a result of the reduction of MnO2 with electro-	initial discharge process are observed. Besides, the intensity of reduction peaks of Mn 4 þ /Mn 3 þ wanes with increasing the amount of CoF2 coating as a result of the reduction of MnO2 with electro-	initial discharge process are observed. Besides, the intensity of reduction peaks of Mn 4 þ /Mn 3 þ wanes with increasing the amount of CoF2 coating as a result of the reduction of MnO2 with electro-
4	85	79	105	#/texts/91	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[111.97, 629.55, 3.56, 5.57]	1	1	1	1
4	81	80	106	#/texts/88#prov0	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 631.6, 64.69, 7.42]	and 259.1 mAh g	and 259.1 mAh g	and 259.1 mAh g	and 259.1 mAh g
4	82	81	107	#/texts/88#prov1	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[118.15, 631.6, 175.42, 7.42]	as well as larger fi rst coulombic ef fi ciencies of	as well as larger fi rst coulombic ef fi ciencies of	as well as larger fi rst coulombic ef fi ciencies of	as well as larger fi rst coulombic ef fi ciencies of
4	83	82	108	#/texts/89	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 642.09, 22.5, 7.42]	82.1%,	82.1%,	82.1%,	82.1%,
4	86	83	109	#/texts/92	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[69.67, 642.09, 188.56, 7.42]	86.2% and 84.4% than bare LNMO (244.0 mAh	86.2% and 84.4% than bare LNMO (244.0 mAh	86.2% and 84.4% than bare LNMO (244.0 mAh	86.2% and 84.4% than bare LNMO (244.0 mAh
4	92	84	110	#/texts/98	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_1_of_2	1	2	p4:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 652.57, 251.07, 38.78]	75.5%), respectively, which mainly attributed to the suppression of side reaction between electrolyte and active material at high potential by CoF2 protective layer, less electrolyte oxidation resulting from less oxygen…	75.5%), respectively, which mainly attributed to the suppression of side reaction between electrolyte and active material at high potential by CoF2 protective layer, less electrolyte oxidation resulting from less oxygen…	75.5%), respectively, which mainly attributed to the suppression of side reaction between electrolyte and active material at high potential by CoF2 protective layer, less electrolyte oxidation resulting from less oxygen removal, proved by CV results (Fig. 5(b)), and	75.5%), respectively, which mainly attributed to the suppression of side reaction between electrolyte and active material at high potential by CoF2 protective layer, less electrolyte oxidation resulting from less oxygen removal, proved by CV results (Fig. 5(b)), and
4	93	85	111	#/texts/99	text	body	True	None	body	body						True	p4:body_region:0	bottom_margin	column_1_of_2	1	2	p4:bottom_margin:column_1_of_2:white	[255, 255, 255]	white	False	False	[42.52, 694.41, 251.08, 55.33]	additional capacity provided by reduction reaction of CoF2 during initial discharge process, the electrochemical conversion reactions of CoF2 shown as follows: CoF2 þ 2Li þ þ 2e   / Co þ 2LiF [31].	additional capacity provided by reduction reaction of CoF2 during initial discharge process, the electrochemical conversion reactions of CoF2 shown as follows: CoF2 þ 2Li þ þ 2e   / Co þ 2LiF [31].	additional capacity provided by reduction reaction of CoF2 during initial discharge process, the electrochemical conversion reactions of CoF2 shown as follows: CoF2 þ 2Li þ þ 2e   / Co þ 2LiF [31].	additional capacity provided by reduction reaction of CoF2 during initial discharge process, the electrochemical conversion reactions of CoF2 shown as follows: CoF2 þ 2Li þ þ 2e   / Co þ 2LiF [31].
4	56	86	112	#/texts/67	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[365.39, 504.03, 3.56, 5.57]	1	1	1	1
4	61	87	113	#/texts/70	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[441.52, 504.03, 3.56, 5.57]	1	1	1	1
4	94	88	114	#/texts/100	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[311.53, 537.49, 251.03, 7.42]	of 63.0% for bare LNMO is obtained at 0.1C. The reason for this	of 63.0% for bare LNMO is obtained at 0.1C. The reason for this	of 63.0% for bare LNMO is obtained at 0.1C. The reason for this	of 63.0% for bare LNMO is obtained at 0.1C. The reason for this
4	79	89	115	#/texts/86	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[180.51, 537.49, 113.05, 7.42]	couple at about 3.25 V during	couple at about 3.25 V during	couple at about 3.25 V during	couple at about 3.25 V during
4	95	90	116	#/texts/101	text	body	True	None	body	body						True	p4:body_region:1	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[311.53, 547.92, 251.06, 59.75]	superior cyclic stability, which generally enhances as the content of CoF2 nano-coating increases, involves two aspects. One reason can be the subdued interfacial reaction and the reduction of TM dissolution bene fi tin…	superior cyclic stability, which generally enhances as the content of CoF2 nano-coating increases, involves two aspects. One reason can be the subdued interfacial reaction and the reduction of TM dissolution bene fi tin…	superior cyclic stability, which generally enhances as the content of CoF2 nano-coating increases, involves two aspects. One reason can be the subdued interfacial reaction and the reduction of TM dissolution bene fi ting from the protection of coating layer. The other reason is the reduction of Li þ irreversible dissolution and TM migration owing to less amount of O2 release, which suppresses the	superior cyclic stability, which generally enhances as the content of CoF2 nano-coating increases, involves two aspects. One reason can be the subdued interfacial reaction and the reduction of TM dissolution bene fi ting from the protection of coating layer. The other reason is the reduction of Li þ irreversible dissolution and TM migration owing to less amount of O2 release, which suppresses the
4	96	91	117	#/texts/102#prov0	text	body	True	None	body	body						True	p4:body_region:1	bottom_margin	column_2_of_2	2	2	p4:bottom_margin:column_2_of_2:white	[255, 255, 255]	white	False	False	[311.53, 610.68, 251.07, 133.0]	phase transformation from layer to spinel structure upon cycling. Voltage decay resulting from the layer-spinel structure conversion, which gives rise to serious decrease in energy density upon cycling, is one of the ma…	phase transformation from layer to spinel structure upon cycling. Voltage decay resulting from the layer-spinel structure conversion, which gives rise to serious decrease in energy density upon cycling, is one of the ma…	phase transformation from layer to spinel structure upon cycling. Voltage decay resulting from the layer-spinel structure conversion, which gives rise to serious decrease in energy density upon cycling, is one of the major issues for Li-rich cathode materials [44,45]. The discharge voltage stability curves of all the samples upon cycling shown in Fig. 6(b), are employed to evaluate the voltage decay. The LNMO cathode material suffers from the serious voltage fading with a large voltage drop of 0.675 V at 0.1C after 100 cycles, while the values of voltage drop for CF-0.1, CF-0.5 and CF-1.0 are 0.542 V, 0.482 V and 0.312 V, respectively. Obviously, the voltage fading rate ef fi ciently slowed down as the increase of CoF2 coating content, which can be attributed to the weak electrode/ electrolyte interfacial reaction and the enhancement of structural	phase transformation from layer to spinel structure upon cycling. Voltage decay resulting from the layer-spinel structure conversion, which gives rise to serious decrease in energy density upon cycling, is one of the major issues for Li-rich cathode materials [44,45]. The discharge voltage stability curves of all the samples upon cycling shown in Fig. 6(b), are employed to evaluate the voltage decay. The LNMO cathode material suffers from the serious voltage fading with a large voltage drop of 0.675 V at 0.1C after 100 cycles, while the values of voltage drop for CF-0.1, CF-0.5 and CF-1.0 are 0.542 V, 0.482 V and 0.312 V, respectively. Obviously, the voltage fading rate ef fi ciently slowed down as the increase of CoF2 coating content, which can be attributed to the weak electrode/ electrolyte interfacial reaction and the enhancement of structural
4	90	93	119	#/texts/96	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[271.22, 640.03, 3.56, 5.57]	1	1	1	1
4	88	95	121	#/texts/94	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[261.92, 642.09, 4.48, 7.42]	g	g	g	g
4	91	96	122	#/texts/97	text	body	True	None	body	body						True	p4:body_region:0	page_body	column_2_of_2	2	2	p4:page_body:column_2_of_2:white	[255, 255, 255]	white	False	False	[279.44, 642.09, 14.15, 7.42]	and	and	and	and
5	1	4	126	#/texts/102#prov1	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 516.44, 17.49, 5.94]	Fig. 5.	Fig. 5.	Fig. 5.	Fig. 5.
5	5	6	128	#/texts/106	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 525.0, 72.55, 5.94]	extraction/insertion of Li	extraction/insertion of Li	extraction/insertion of Li	extraction/insertion of Li
5	6	8	130	#/texts/107	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 558.41, 31.89, 7.42]	stability.	stability.	stability.	stability.
5	12	14	136	#/texts/113	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[94.79, 598.14, 3.56, 5.57]	1	1	1	1
5	10	16	138	#/texts/111	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 600.25, 57.19, 7.42]	of 914.9 Wh kg	of 914.9 Wh kg	of 914.9 Wh kg	of 914.9 Wh kg
5	26	20	142	#/texts/127	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[147.34, 608.63, 3.56, 5.57]	1	1	1	1
5	24	21	143	#/texts/125	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 610.68, 109.74, 7.42]	compared with 872.9 Wh kg	compared with 872.9 Wh kg	compared with 872.9 Wh kg	compared with 872.9 Wh kg
5	27	22	144	#/texts/128#prov0	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[153.69, 610.68, 130.15, 7.42]	for LNMO, as a result of improved	for LNMO, as a result of improved	for LNMO, as a result of improved	for LNMO, as a result of improved
5	29	25	147	#/texts/128#prov2	text	body	True	None	body	body						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	[442.94, 568.84, 109.91, 7.42]	but also prevents the extrac-	but also prevents the extrac-	but also prevents the extrac-	but also prevents the extrac-
5	33	34	156	#/texts/131#prov0	text	body	True	None	body	body						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	[301.83, 610.68, 29.93, 7.42]	exhibits	exhibits	exhibits	exhibits
5	34	35	157	#/texts/131#prov1	text	body	True	None	body	body						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	[336.58, 610.68, 12.33, 7.42]	the	the	the	the
5	35	36	158	#/texts/131#prov2	text	body	True	None	body	body						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	[353.82, 610.68, 36.38, 7.42]	improved	improved	improved	improved
5	36	37	159	#/texts/131#prov3	text	body	True	None	body	body						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	[395.03, 610.68, 30.35, 7.42]	stability	stability	stability	stability
5	37	38	160	#/texts/131#prov4	text	body	True	None	body	body						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	[430.24, 610.68, 17.51, 7.42]	with	with	with	with
5	38	39	161	#/texts/131#prov5	text	body	True	None	body	body						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	[452.63, 610.68, 12.33, 7.42]	the	the	the	the
5	39	40	162	#/texts/131#prov6	text	body	True	None	body	body						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	[469.81, 610.68, 31.04, 7.42]	capacity	capacity	capacity	capacity
5	40	41	163	#/texts/131#prov7	text	body	True	None	body	body						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	[505.75, 610.68, 34.9, 7.42]	retention	retention	retention	retention
5	41	42	164	#/texts/131#prov8	text	body	True	None	body	body						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	[545.55, 610.68, 7.33, 7.42]	of	of	of	of
5	42	43	165	#/texts/132	caption	body	True	None	recovered_unbound_docling_caption	recovered_unbound_docling_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	[32.82, 621.17, 520.06, 17.86]	initial discharge capacities and similar operating voltage after CoF2 coating. Accordingly, the excellent stability of capacity and voltage 93.6% and the value of voltage drop of 0.299 V after 100 cycles as shown in Fig…	initial discharge capacities and similar operating voltage after CoF2 coating. Accordingly, the excellent stability of capacity and voltage 93.6% and the value of voltage drop of 0.299 V after 100 cycles as shown in Fig…	initial discharge capacities and similar operating voltage after CoF2 coating. Accordingly, the excellent stability of capacity and voltage 93.6% and the value of voltage drop of 0.299 V after 100 cycles as shown in Fig. S1(inset a and b), which is close to the results of CF-	initial discharge capacities and similar operating voltage after CoF2 coating. Accordingly, the excellent stability of capacity and voltage 93.6% and the value of voltage drop of 0.299 V after 100 cycles as shown in Fig. S1(inset a and b), which is close to the results of CF-
5	43	44	166	#/texts/133	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 642.09, 251.07, 7.42]	for CF-1.0 delivers the highest retention value of 84.9% after 100	for CF-1.0 delivers the highest retention value of 84.9% after 100	for CF-1.0 delivers the highest retention value of 84.9% after 100	for CF-1.0 delivers the highest retention value of 84.9% after 100
5	44	45	167	#/texts/134	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 652.57, 251.05, 7.42]	cycles despite reducing on the fi rst discharge capacity than CF-0.5,	cycles despite reducing on the fi rst discharge capacity than CF-0.5,	cycles despite reducing on the fi rst discharge capacity than CF-0.5,	cycles despite reducing on the fi rst discharge capacity than CF-0.5,
5	45	46	168	#/texts/135	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 663.0, 215.53, 7.42]	while LNMO exhibits the lowest retention value of 51.1%.	while LNMO exhibits the lowest retention value of 51.1%.	while LNMO exhibits the lowest retention value of 51.1%.	while LNMO exhibits the lowest retention value of 51.1%.
5	47	48	170	#/texts/137	text	body	True	None	body	body						True	p5:body_region:0	page_body	column_1_of_2	1	2	p5:page_body:column_1_of_2:white	[255, 255, 255]	white	False	False	[32.83, 683.92, 251.03, 7.43]	sample whose CoF2 coating content is higher than 1.0 wt%, Fig. S1 in	sample whose CoF2 coating content is higher than 1.0 wt%, Fig. S1 in	sample whose CoF2 coating content is higher than 1.0 wt%, Fig. S1 in	sample whose CoF2 coating content is higher than 1.0 wt%, Fig. S1 in
