扩展缩超基与单价离子结合了流动性和高计算电化学稳定性
Guopeng Han1, Andrij Vasylenko1, Alex R Neale1,2
1Department of Chemistry, University of Liverpool, Crown Street, Liverpool, L69 7ZD, United Kingdom.
Journal of the American Chemical Society
|October 22, 2021
概括
研究人员开发了新的超材料Li3P5O14和Li4P6O17,为先进的离子电池提供了增强的离子导电性和电化学稳定性.
科学领域:
- 固态无机化学
- 材料科学
- 电化学
背景情况:
- 扩展的离子框架是多样化的,但没有报告的超酸盐.
- 酸盐和酸盐在地球上丰富,但它们的超酸盐形式尚未被探索.
- 开发新的固体电解质对于下一代储能至关重要.
研究的目的:
- 合成和描述新的超化合物.
- 研究这些新材料的离子导电性和电化学性质.
- 探索它们作为离子电池的固体电解质的潜力.
主要方法:
- 确定Li3P5O14和Li4P6O17的晶体结构
- 阻抗光谱和直流极化用于离子导电量测量.
- 用于电化学评估的NMR光谱和静电涂层/脱落.
主要成果:
- 发现了具有分层超酸盐结构的Li3P5O14,以及具有循环分支链的Li4P6O17.
- 3P5O14具有较高的离子导电性 (8.5~5) ×10~7 S cm~1) 和较低的激活能量 (0.43~7) eV.
- 这两种化合物都显示出高预测的热力学稳定性, Li3P5O14 稳定到 4. 8 V.
结论:
- 新的超酸盐为固体电解质提供了一个新的结构平台.
- 3P5O14在离子电池应用中显示出有前途的离子导电性和电化学稳定性.
- 这些材料提供了优化电解质性能的新策略,可能用于正极涂层.
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