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富锂层状金属氧化物碱金属层中四面体锂的可视化

Visualization of Tetrahedral Li in the Alkali Layers of Li-Rich Layered Metal Oxides.

作者信息

Song Weixin, Pérez-Osorio Miguel A, Chen Jun, Ding Zhiyuan, Marie John-Joseph, Juelsholt Mikkel, House Robert A, Bruce Peter G, Nellist Peter D

机构信息

Department of Materials, University of Oxford, Oxford OX1 3PH, U.K.

The Faraday Institution, Didcot OX11 0RA, U.K.

出版信息

J Am Chem Soc. 2024 Aug 28;146(34):23814-23824. doi: 10.1021/jacs.4c05556. Epub 2024 Aug 14.

Abstract

Understanding Li ion diffusion pathways in Li-rich layered transition metal (TM) oxides is crucial for understanding the sluggish kinetics in anionic O redox. Although Li diffusion within the alkali layers undergoes a low-barrier octahedral-tetrahedral-octahedral pathway, it is less clear how Li diffuses in and out of the TM layers, particularly given the complex structural rearrangements that take place during the oxidation of O. Here, we develop simultaneous electron ptychography and annular dark field imaging methods to unlock the Li migration pathways in LiNiMnCoO associated with structural changes in the charge-discharge cycle. At the end of TM oxidation and before the high-voltage O oxidation plateau, we show that the Li migrating out of the TM layers occupies the alkali-layer tetrahedral sites on opposite sides of the TM layers, forming Li-Li dumbbell configurations, consistent with the density functional theory calculations. Also occurring are the TM migration and phase transition from O3 to O1 stacking, leading to unstable tetrahedral Li and the absence of Li contrast in imaging. Upon further Li deintercalation to 4.8 V, most of the tetrahedral Li are removed. After discharging to 2 V, we did not identify the reformation of tetrahedral Li but observed permanently migrated TMs at the alkali-layer sites, disfavoring the Li occupying the tetrahedral sites for diffusion. Our findings suggest a landscape of Li diffusion pathways in Li-rich layered oxides and strategies for minimizing the disruption of Li diffusion.

摘要

了解富锂层状过渡金属(TM)氧化物中的锂离子扩散途径对于理解阴离子O氧化还原反应中的缓慢动力学至关重要。尽管碱层内的锂扩散经历了低势垒的八面体-四面体-八面体途径,但锂如何进出TM层尚不清楚,特别是考虑到O氧化过程中发生的复杂结构重排。在这里,我们开发了同步电子叠层成像和环形暗场成像方法,以揭示LiNiMnCoO中与充放电循环结构变化相关的锂迁移途径。在TM氧化结束时和高压O氧化平台之前,我们表明从TM层迁出的锂占据了TM层相对两侧的碱层四面体位置,形成Li-Li哑铃构型,这与密度泛函理论计算结果一致。同时还发生了TM迁移和从O3到O1堆积的相变,导致四面体锂不稳定且成像中没有锂对比度。进一步将锂脱嵌至4.8 V后,大部分四面体锂被去除。放电至2 V后,我们未发现四面体锂的重新形成,但观察到碱层位置存在永久迁移的TM,不利于锂占据四面体位置进行扩散。我们的研究结果揭示了富锂层状氧化物中锂扩散途径的情况以及使锂扩散干扰最小化的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b54/11363138/f844def4a10f/ja4c05556_0001.jpg

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