Battery Research Department, Toyota Motor Corporation, Shizuoka, 410-1193, Japan.
Department of Chemical Science and Engineering, Tokyo Institute of Technology, Kanagawa, 226-8502, Japan.
Sci Rep. 2017 Aug 1;7(1):6972. doi: 10.1038/s41598-017-07086-y.
In general, the ionic conductivity of sulfide glasses decreases with their crystallization, although it increases for a few sulphide glasses owing to the crystallization of a highly conductive new phase (e.g., LiPS: 70LiS-30PS). We found that the ionic conductivity of 75LiS-25PS sulfide glass, which consists of glassy and crystalline phases, is improved by optimizing the conditions of the heat treatment, i.e., annealing. A different mechanism of high ionic conductivity from the conventional mechanism is expected in the glassy phase. Here, we report the glassy structure of 75LiS-25PS immediately before the crystallization by using the differential pair distribution function (d-PDF) analysis of high-energy X-ray diffraction. Even though the ionic conductivity increases during the optimum annealing, the d-PDF analysis indicated that the glassy structure undergoes no structural change in the sulfide glass-ceramic electrolyte at a crystallinity of 33.1%. We observed the formation of a nanocrystalline phase in the X-ray and electron diffraction patterns before the crystallization, which means that Bragg peaks were deformed. Thus, the ionic conductivity in the mixture of glassy and crystalline phases is improved by the coexistence of the nanocrystalline phase.
一般来说,尽管由于新的高导电性相(例如 LiPS:70LiS-30PS)的结晶,一些硫化物玻璃的离子电导率会增加,但硫化物玻璃的离子电导率会随着结晶而降低。我们发现,由玻璃相和结晶相组成的 75LiS-25PS 硫化物玻璃的离子电导率通过优化热处理条件(即退火)得到改善。在玻璃相中,有望出现与传统机制不同的高离子电导率机制。在这里,我们使用高能 X 射线衍射的差分配对分布函数(d-PDF)分析,报告了在结晶之前的 75LiS-25PS 的玻璃状结构。尽管在最佳退火期间离子电导率增加,但 d-PDF 分析表明,在结晶度为 33.1%的情况下,硫化物玻璃陶瓷电解质中的玻璃状结构没有发生结构变化。在结晶之前,我们在 X 射线和电子衍射图谱中观察到纳米晶相的形成,这意味着布拉格峰发生了变形。因此,纳米晶相的共存提高了玻璃相和结晶相混合物中的离子电导率。