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The Effect of Key Electronic States on Excess Lithium Intercalation in Li2RuyMn1-yO3.
Zheng S, Li J, Yu P, Li Y, Xia Y, Li X, Ren G, Zhang N, Jiang Z, Liu X. Zheng S, et al. Among authors: li y, li j, li x. J Phys Chem Lett. 2023 Apr 6;14(13):3296-3306. doi: 10.1021/acs.jpclett.3c00340. Epub 2023 Mar 29. J Phys Chem Lett. 2023. PMID: 36988183
Herein, the comparative study of Li(2)Ru(y)Mn(1-y)O(3) and Li(2)Ru(y)Ti(1-y)O(3) by X-ray absorption and photoemission spectroscopies attempts to illustrate the origin. ...The electronic state is thought to reduce the Coulomb repulsion of Li(+) with th …
Herein, the comparative study of Li(2)Ru(y)Mn(1-y)O(3) and Li(2)Ru(y)Ti(1-y)O(3) by X-ray absorption and photoemission …
Dynamical evolution of CO2 and H2O on garnet electrolyte elucidated by ambient pressure X-ray spectroscopies.
Zhang N, Ren G, Li L, Wang Z, Yu P, Li X, Zhou J, Zhang H, Zhang L, Liu Z, Liu X. Zhang N, et al. Among authors: li x, li l. Nat Commun. 2024 Mar 30;15(1):2777. doi: 10.1038/s41467-024-47071-4. Nat Commun. 2024. PMID: 38555416 Free PMC article.
Garnet-type Li(6.5)La(3)Zr(1.5)Ta(0.5)O(12) (LLZO) is considered a promising solid electrolyte, but the surface degradation in air hinders its application for all-solid-state battery. ...The newly developed ambient pressure mapping of resonant Auger spectroscopy clearly di …
Garnet-type Li(6.5)La(3)Zr(1.5)Ta(0.5)O(12) (LLZO) is considered a promising solid electrolyte, but the surface degradation in air hi …
169,301 results
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