逆向蒙特卡罗
快离子导体
材料科学
锂(药物)
中子衍射
离子电导率
中子散射
电解质
结晶
对分布函数
散射
分析化学(期刊)
热力学
化学
晶体结构
结晶学
物理化学
光学
内分泌学
数学分析
物理
医学
色谱法
数学
电极
作者
Kazutaka Ikeda,Takuya Kimura,Koji Ohara,Toyoto Sato,H. Ohshita,Atsushi Sakuda,Akitoshi Hayashi
标识
DOI:10.1021/acs.jpcc.3c00414
摘要
Sodium solid electrolytes are expected to be safer and more durable than lithium solid electrolytes, which affect the properties of all-solid-state lithium-ion batteries nearing commercialization. The heat treatment of Na 3 PS 4 glass ceramics, a strong candidate for sodium solid electrolytes, results in ionic conductivity exceeding 10 –4 S cm –1 at ambient temperature, depending on the heat-treatment conditions. First-principles calculations have suggested that vacancies at Na sites promote ionic conduction; however, the existence of vacancies has not been confirmed through a conventional average structure analysis of X-ray and neutron diffraction profiles or pair distribution functions. In this study, local structure analysis of Na 3 PS 4 glass ceramics using reverse Monte Carlo modeling was performed on the pair distribution function obtained from neutron total scattering measurements during and after heat treatment to identify the vacancy locations that differ from the Na occupation sites. The vacancies in Na 3 PS 4 glass ceramics after heat treatment revealed a more disordered atomic arrangement than Na, suggesting that the vacancies connecting Na occupation sites are most likely responsible for the promotion of Na ion conduction. The control of vacancies in solid electrolytes is essential for the design of practical all-solid-state sodium batteries.
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