硫化基固体电解质的结构分析和离子导电机制,这些固体电解质与Br合
Hiroshi Yamaguchi1,2, Kentaro Kobayashi3, Satoshi Hiroi3
1Graduate School of Natural Science and Technology, 1060, Nishikawatsu-Cho, Matsue, Shimane, 690-8504, Japan.
Scientific reports
|September 25, 2023
概括
将添加到酸硫化物玻璃中,可以创建具有高离子导电性的晶体结构. 这种素结合增强了离子通路,对于先进的电池材料至关重要.
科学领域:
- 材料科学 材料科学 材料科学
- 固态化学 固态化学
- 电化学 电化学 电化学
背景情况:
- 硫化玻璃在结晶后显示出离子导电性.
- 硫化酸 (Li3PS4) 是一种已知的硫化玻璃.
- 高离子导电性对于电池应用是可取的.
研究的目的:
- 为了研究 (Br) 化Li3PS4硫化玻璃的局部结构和离子导电性.
- 了解Br的结合如何影响晶体结构和离子运输通路.
- 探索素兴奋剂在增强离子导电性的潜力.
主要方法:
- 使用高能X射线衍射进行对分布函数 (PDF) 分析.
- 债券价值总和 (BVS) 的计算.
- 离子导电性测量. 离子导电性测量.
主要成果:
- 在Li3PS4玻璃中的结合导致了与母PS4离子框架不同的晶体结构.
- 由此产生的玻璃陶具有与Li10GeP2S12.12相当的离子导电性.
- 债券价值总和分析证实,Br促进了离子导电路的形成.
- 结构性过渡到β相会导致离子导电率降低.
结论:
- 在硫化玻璃中加入素,特别是,可以创建有利的离子导电路径.
- 通过素兴奋剂精确控制阳离子分子结构是开发高离子导电性材料的有希望的策略.
- 这种方法有可能在下一代电池中推进固态电解质.
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