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X-ray pair distribution function analysis and electrical and electrochemical properties of cerium doped Li5La3Nb2O12 garnet solid-state electrolyte

机译:X射线对分布函数分析和电化学性能掺杂Li5LA3NB2O12石榴石固态电解质

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Garnet solid state electrolytes have been considered as potential candidates to enable next generation all solid state batteries (ASSBs). To facilitate the practical application of ASSBs, a high room temperature ionic conductivity and a low interfacial resistance between solid state electrolyte and electrodes are essential. In this work, we report a study of cerium doped Li5La3Nb2O12 through X-ray pair distribution function analysis, impedance spectroscopy and electrochemical testing. The successful cerium incorporation was confirmed by both X-ray diffraction refinement and X-ray pair distribution function analysis, showing the formation of an extensive solid solution. The local bond distances for Ce and Nb on the octahedral site were determined using X-ray pair distribution function analysis, illustrating the longer bond distances around Ce. This Ce doping strategy was shown to give a significant enhancement in conductivity (1.4 x 10(-4) S cm(-1) for Li5.75La3Nb1.25Ce0.75O12, which represents one of the highest conductivities for a garnet with less than 6 Li) as well as a dramatically decreased interfacial resistance (488 Omega cm(2) for Li5.75La3Nb1.25Ce0.75O12). In order to demonstrate the potential of this doped system for use in ASSBs, the long term cycling of a Li//garnet//Li symmetric cell over 380 h has been demonstrated.
机译:石榴石固态电解质被认为是潜在的候选者,以实现下一代所有固态电池(ASSB)。为了便于ASSB的实际应用,高室温离子电导率和固态电解质和电极之间的低界面性是必需的。在这项工作中,我们通过X射线对分布函数分析,阻抗光谱和电化学测试报告了铈掺杂Li5LA3NB2O12的研究。通过X射线衍射细化和X射线对分布函数分析证实了成功的铈掺入,显示出形成广泛的固溶体。使用X射线对分布函数分析确定CE和Nb对八面体部位的局部键距离,示出了CE周围的延长距离。该CE掺杂策略显示为LI5.75LA31.25CE0.75O12的电导率(1.4×10(-4)CM(-1)的显着增强,这代表了小于6的石榴石的最高导电性之一Li)以及血液抗性(488ωCM(2)的显着降低,为LI5.75LA3NB1.25CE0.75O12)。为了证明这种掺杂系统用于ASSB的潜力,已经证明了LI // GARNET // LI对称细胞的长期循环超过380小时。

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