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	Docling Figure 1	1	missing_caption	False							0.55	[325.65, 312.98, 233.3, 103.99]	* S Supporting Information		
2	figure	Fig. 1	2	direct_caption_ref	False							0.82	[332.68, 66.19, 221.74, 288.41]	■ RESULTS AND DISCUSSION	Figure 1. Structure of as-prepared Li 2 MoO3. (a) Schematic lattice of Li2MoO3. (b) The re fi ned XRD pattern of Li2MoO3 ( λ = 0.7747 Å) using GSAS program. (c) ABF STEM image of Li2MoO3 along the [100] zone axis with M…	Figure 1. Structure of as-prepared Li 2 MoO3. (a) Schematic lattice of Li2MoO3. (b) The re fi ned XRD pattern of Li2MoO3 ( λ = 0.7747 Å) using GSAS program. (c) ABF STEM image of Li2MoO3 along the [100] zone axis with Mo ions in slipped αβγ -stacking (O3 type). (d) The corresponding HAADF STEM image of part c. The bright dots represent Mo-ion column. (e) The corresponding line contrast pro fi le of the Li, Mo, and O in parts c and d along the [421 ̅ ] direction with the image contrast of dark dots in part c inverted and displayed as peaks. (f) The corresponding line contrast pro fi les of the Mo ions in part d along the marked rows. The marked black solid circle presents the much strong contrast of Mo-ion column.
3	figure	Fig. 2	3	direct_caption_ref	False							0.82	[65.66, 113.14, 228.85, 257.59]	■ RESULTS AND DISCUSSION	Figure 2. Structural evolution of Li2MoO3 during the initial delithiation and lithiation. (a) In situ XRD patterns of Li2 -x MoO3 (0 ≤ x ≤ 2) electrodes while a Li 2 MoO3/Li cell is charged and discharged at a current d…	Figure 2. Structural evolution of Li2MoO3 during the initial delithiation and lithiation. (a) In situ XRD patterns of Li2 -x MoO3 (0 ≤ x ≤ 2) electrodes while a Li 2 MoO3/Li cell is charged and discharged at a current density of 10 mA g -1 between 2.0 and 4.8 V. (b) Schematic structures of Li 2 -x MoO3 (0 ≤ x ≤ 2) (V representing atomic vacancy) during the initial charge and discharge process.
4	figure	Fig. 3	3	direct_caption_ref	False							0.82	[328.79, 188.34, 229.37, 254.46]	■ RESULTS AND DISCUSSION	Figure 3. Detection of Mo-ion migration in atomic scale. (a) HAADF image of the as-prepared Li 2 MoO3 along the [100] zone axis. (c and e) HAADF images of the charged and discharged Li2MoO3 along the [1 ̅ 00] zone axis,…	Figure 3. Detection of Mo-ion migration in atomic scale. (a) HAADF image of the as-prepared Li 2 MoO3 along the [100] zone axis. (c and e) HAADF images of the charged and discharged Li2MoO3 along the [1 ̅ 00] zone axis, respectively. The Mo ions at 3a and 3b sites in the HAADF images are presented with pink and yellow solid circles, respectively. (b , d , and f) Corresponding line contrast pro fi les of Mo ions along the marked rows in the HAADF images. The much strong contrast of Mo ions is marked with black solid circle in the line contrast pro fi les.
5	figure	Fig. 4	4	direct_caption_ref	False							0.82	[65.84, 277.25, 227.83, 284.16]	■ RESULTS AND DISCUSSION	Figure 4. Charge compensation of Li2MoO3 during the initial delithiation and lithiation. (a) XANES spectra of Mo K-edge of Li2MoO3 at di ff erent delithiation and lithiation states. (b) Fouriertransformed Mo K-edge EXAF…	Figure 4. Charge compensation of Li2MoO3 during the initial delithiation and lithiation. (a) XANES spectra of Mo K-edge of Li2MoO3 at di ff erent delithiation and lithiation states. (b) Fouriertransformed Mo K-edge EXAFS spectra of Li2MoO3 corresponding to part a. (c) ABF imaging of Li2MoO3 at di ff erent delithiation and lithiation states showing the variation of the Mo -O distances, indicating the distortion of the MoO 6 octahedra during Li + extraction and insertion. (d) PEY mode and (e) FY mode of O K-edge soft XAS spectra of Li 2 MoO3 at di ff erent delithiation and lithiation states.
6	figure	Fig. 5	5	direct_caption_ref	False							0.82	[334.57, 63.57, 219.99, 172.71]	■ RESULTS AND DISCUSSION	Figure 5. Structural transition of Li2MoO3 in the initial electrochemical (de)lithiation process. The lattice structure variation demonstrates that solid-solution reaction and two-phase reaction occur in consequence.	Figure 5. Structural transition of Li2MoO3 in the initial electrochemical (de)lithiation process. The lattice structure variation demonstrates that solid-solution reaction and two-phase reaction occur in consequence.
