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Facet-engineered NaNbO3 cubes with exposed (101) plane for enhanced lithium-ion storage
Chemical Communications ( IF 4.3 ) Pub Date : 2024-12-12 , DOI: 10.1039/d4cc05420b
Hongping Li, Rong Kang, Zhilong Song, Dickon H. L. Ng, Xiaoshui Peng, Fen Qiao, Jia Yan, Jiabiao Lian

Density functional theory (DFT) predicts superior lithium-ion diffusion via the (101) plane of NaNbO3. Experimental results confirm that despite a reduction in surface area, 6 μm NaNbO3 cubes with more (101) plane exposure exhibit enhanced Li+ storage, underscoring the significance of crystal facet engineering.

中文翻译:


刻面工程 NaNbO3 立方体,具有外露 (101) 平面,用于增强锂离子存储



密度泛函理论 (DFT) 预测通过 NaNbO3 的 (101) 平面实现优越的锂离子扩散。实验结果证实,尽管表面积减少,但具有更多 (101) 平面曝光的 6 μm NaNbO3 立方体表现出增强的 Li+ 存储,强调了晶体刻面工程的重要性。
更新日期:2024-12-12
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