asset_index	element_type	label	page	caption_source	suppress_in_index	duplicate_of	duplicate_reason	region_rescue_reason	visual_group_id	parent_visual_label	parent_visual_type	confidence	bbox	section	caption_preview	caption
1	figure	Fig. 1	3	direct_caption_ref	False							0.82	[134.62, 56.55, 333.87, 121.09]	3.2. Impact of DTMS at electrochemical perform	Fig. 1. Optimized structures and Eb values of solvents-Li + and DTMS-Li + .	Fig. 1. Optimized structures and Eb values of solvents-Li + and DTMS-Li + .
2	figure	Fig. 2	3	direct_caption_ref	False							0.82	[126.51, 219.03, 339.8, 241.36]	3.2. Impact of DTMS at electrochemical perform	Fig. 2. (a) Cycling performance and (b) rate capability of LRM/Li cell. (c) (d) 1st, 20th, 50th, and 100th charge -discharge curves of LRM/Li cell during cycling.	Fig. 2. (a) Cycling performance and (b) rate capability of LRM/Li cell. (c) (d) 1st, 20th, 50th, and 100th charge -discharge curves of LRM/Li cell during cycling.
3	figure	Fig. 3	4	direct_caption_ref	False							0.82	[127.57, 56.82, 339.17, 237.05]	3.2. Impact of DTMS at electrochemical perform	Fig. 3. EIS results of LRM/Li cell in BE and 2 vol% DTMS electrolyte after (a) pre-cycling and (b) cycling. (c) Values of Rf and Rct.	Fig. 3. EIS results of LRM/Li cell in BE and 2 vol% DTMS electrolyte after (a) pre-cycling and (b) cycling. (c) Values of Rf and Rct.
4	figure	Fig. 4	4	direct_caption_ref	False							0.82	[126.02, 335.06, 341.65, 242.9]	3.2. Impact of DTMS at electrochemical perform	Fig. 4. TEM and SEM images of LRM cathodes after cycling (a), (c) with BE and (b), (d) 2 vol% DTMS electrolyte.	Fig. 4. TEM and SEM images of LRM cathodes after cycling (a), (c) with BE and (b), (d) 2 vol% DTMS electrolyte.
5	figure	Fig. 5	5	direct_caption_ref	False							0.82	[77.13, 57.01, 440.24, 486.67]	3.2. Impact of DTMS at electrochemical perform	Fig. 5. (a)XPS spectra of LRM cathodes after cycling with BE and 2 vol% DTMS electrolytes. (b) XRD patterns of LRM cathodes and (c) dissolution of transition metal on Li electrode taken from cell after cycling.	Fig. 5. (a)XPS spectra of LRM cathodes after cycling with BE and 2 vol% DTMS electrolytes. (b) XRD patterns of LRM cathodes and (c) dissolution of transition metal on Li electrode taken from cell after cycling.
6	figure	Fig. 6	6	direct_caption_ref	False							0.82	[126.82, 57.22, 340.55, 172.57]	3.3. Interaction of DTMS with HF/F	Fig. 6. (a) Discharge profiles of cell during cycling with BE + 1000 ppm HF and 2 vol% DTMS-containing + 1000 ppm HF; F 1s XPS spectra of LRM cathodes after cycling with (b) BE + 1000 ppm HF and (c) 2 vol% DTMS-containi…	Fig. 6. (a) Discharge profiles of cell during cycling with BE + 1000 ppm HF and 2 vol% DTMS-containing + 1000 ppm HF; F 1s XPS spectra of LRM cathodes after cycling with (b) BE + 1000 ppm HF and (c) 2 vol% DTMS-containing + 1000 ppm HF electrolyte.
7	figure	Docling Figure 7	6	missing_caption	False							0.55	[127.42, 421.93, 340.9, 242.33]	3.3. Interaction of DTMS with HF/F		
8	figure	Fig. 8	7	direct_caption_ref	False							0.82	[128.27, 57.42, 337.83, 98.38]	3.3. Interaction of DTMS with HF/F	Fig. 8. Possible mechanism of DTMS.	Fig. 8. Possible mechanism of DTMS.
9	table	Table 1	2	nearby_text_caption	False							0.82	[364.83, 83.37, 133.46, 53.61]	2.2. Electrochemical testing	Table 1 Calculated Eox (V vs. Li +	Table 1 Calculated Eox (V vs. Li +
