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◆ Inorganic chemistry2026-09-14

Coupled Antisite/Interstitial Li Defects Regulate Lithium Migration in Li5AlO4 Antifluorite Oxide.

Mohan Jia, Run Yu, Hongwei Zheng, Qiaoxin Zhang, Huacai Yan, Yifeng An, Hexuan Chen, Atif Nazir, Yonggang Wang, Ruqiang Zou

原始摘要(英文原文)· Original abstract
Antifluorite oxides containing ordered tetrahedral voids provide a structurally flexible platform for Li-ion transport; however, experimentally identifying and controlling the defect configurations that activate these voids remains challenging. Here, Li-excess defect engineering is demonstrated in orthorhombic Li5AlO4 to regulate its Li-ion transport behavior. High-resolution time-of-flight neutron powder diffraction (TOF-NPD), combined with Rietveld refinement and Fourier difference nuclear-density mapping, resolves the underlying Li-related defect architecture. The refinement results reveal that excess Li is accommodated through the coupled formation of Al/Li antisite occupancy at the 2a Wyckoff site and newly occupied interstitial Li at the intrinsically vacant 2b site, accompanied by systematic lattice expansion and local structural relaxation. BVSE-guided CI-NEB calculations reveal a multistep Li-ion migration network, in which the three-dimensional bottleneck decreases from 0.43 eV in pristine Li5AlO4 to 0.40 eV in the coupled-defect model, while the local migration segments directly involving the occupied 2b site exhibit larger barrier reductions. Consistently, electrochemical impedance spectroscopy shows an increase in the room-temperature bulk ionic conductivity to 3.33 × 10-7 S cm-1 for the Li-excess sample. These findings establish an experimentally validated correlation between Li-related defect chemistry and ion transport in Li5AlO4, providing guidance for defect-enabled transport design in antifluorite oxide conductors.
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Coupled Antisite/Interstitial Li Defects Regulate Lithium Migration in Li5AlO4 Antifluorite Oxide. — 科研速览 Science Skim