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首页> 外文期刊>Russian journal of electrochemistry >Synthesis of Thin-Film Electrodes Based on LiPON and LiPON–LLTO–LiPON
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Synthesis of Thin-Film Electrodes Based on LiPON and LiPON–LLTO–LiPON

机译:基于LiPON和LiPON–LLTO–LiPON的薄膜电极的合成

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摘要

Thin lithium-conducting amorphous films of lithium phosphorus oxynitride (LiPON) are synthesized by high-frequency (HF) magnetron sputtering. The effect of sputtering conditions (HF power, support temperature, working gas pressure, and deposition time) on the microstructure of LiPON films is studied. The optimal conditions of HF magnetron sputtering that allow dense, uniform, crack-free, air-stable, amorphous thin LIPON films to be formed are studied. The composite solid electrolyte LiPON–LLTO–LiPON is synthesized based on LiPON films and the La_(2/3 – x)Li_(3x)TiO_3 (LLTO) ceramics characterized by the high conductivity with respect to lithium ions but unstable in contact with metal lithium. Its microstructure and electrophysical properties are studied. It is found that the LiPON film prevents the chemical reaction of metal lithium with the LLTO solid electrolyte. Due to the high chemical stability and the enhanced conductivity, the composite solid electrolyte based on LiPON–LLTO–LiPON can be used in electrochemical devices.
机译:通过高频(HF)磁控管溅射法合成了氮氧化锂磷(LiPON)的导电锂非晶薄膜。研究了溅射条件(HF功率,支撑温度,工作气体压力和沉积时间)对LiPON薄膜微观结构的影响。研究了允许形成致密,均匀,无裂纹,空气稳定的非晶态薄LIPON薄膜的HF磁控溅射的最佳条件。基于LiPON薄膜和La_(2/3-x)Li_(3x)TiO_3(LLTO)陶瓷合成合成固体电解质LiPON–LLTO–LiPON,其特征在于相对于锂离子具有高电导率,但与金属接触时不稳定锂。研究了其微观结构和电物理性质。发现LiPON膜防止金属锂与LLTO固体电解质的化学反应。由于高化学稳定性和增强的导电性,基于LiPON–LLTO–LiPON的复合固体电解质可用于电化学装置。

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