首页> 外文期刊>Nano letters >Tailoring Solution-Processable Li Argyrodites Li6+xP1-xMxS5I (M = Ge, Sn) and Their Microstructural Evolution Revealed by Cryo-TEM for All-Solid-State Batteries
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Tailoring Solution-Processable Li Argyrodites Li6+xP1-xMxS5I (M = Ge, Sn) and Their Microstructural Evolution Revealed by Cryo-TEM for All-Solid-State Batteries

机译:剪裁解决方案 - 加工李宇曲线LI6 + XP1-XMXS5i(M = GE,SN)及其用于全固态电池的Cryo-TEM显示的微观结构演进

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摘要

Owing to their high Li+ conductivities, mechanical sinterability, and solution processability, sulfide Li argyrodites have attracted much attention as enablers in the development of high-performance all-solid-state batteries with practicability. However, solution-processable Li argyrodites have been developed only for a composition of Li6PS5X (X = Cl, Br, I) with insufficiently high Li+ conductivities (similar to 10(-4) S cm(-1)). Herein, we report the highest Li+ conductivity of 0.54 mS cm(-1) at 30 degrees C (Li6.5P0.5Ge0.5S5I) for solution-processable iodine-based Li argyrodites. A comparative investigation of three iodine-based argyrodites of unsubstituted and Ge- and Sn-substituted solution-processed Li6PS5I with varied heat-treatment temperature elucidates the effect of microstructural evolution on Li+ conductivity. Notably, local nanostructures consisting of argyrodite nanocrystallites in solution-processed Li6.5P0.5Ge0.5S5I have been directly captured by cryogenic transmission electron microscopy, which is a first for sulfide solid electrolyte materials. Specifically, the promising electrochemical performances of all-solid-state batteries at 30 degrees C employing LiCoO2 electrodes tailored by the infiltration of Li6.5P0.5Ge0.5S5I-ethanol solutions are successfully demonstrated.
机译:由于其高+电导率,机械烧结性和溶液加工性,硫化物李宇曲线引起了很多关注,因为具有实用性高性能全固态电池的推动力。然而,可以仅针对Li6PS5x(X = Cl,Br,I)的组成开发的溶液加工的Li Argyrodites,Li6PS5x(X = Cl,Br,I)的组成具有不足的Li +导电性(类似于10(-4)Cm(-1))。在此,我们在30℃(Li6.5P0.5Ge0.5S5i)下以0.54ms cm(-1)的最高Li +电导率为溶液加工的碘的锂argyrodites。具有不同热处理温度的未取代和Ge-和Sn取代的溶液加工Li6PS5i的三种基于碘基竞技的比较研究阐明了微观结构演化对Li +电导率的影响。值得注意的是,通过低温透射电子显微镜直接捕获由溶液加工Li6.50.5Ge0.5S5i中的占氧化钛纳米晶胞组成的局部纳米结构。这是首先用于硫化物固体电解质材料的第一。具体地,成功地证明了通过Li6.5ME.5ME-5-乙醇溶液浸润的LiCoO2电极在30摄氏度下采用LiCoO 2电极的有前途的电化学性能。

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