材料科学
电解质
快离子导体
无机化学
化学工程
纳米技术
电极
物理化学
工程类
化学
作者
Selim Halacoglu,Xiaolin Guo,Yan Chen,Dunji Yu,Badri Narayanan,Jacek B. Jasiński,Hui Wang
出处
期刊:Nano Energy
[Elsevier BV]
日期:2025-02-11
卷期号:137: 110770-110770
被引量:3
标识
DOI:10.1016/j.nanoen.2025.110770
摘要
Sulfide-type sodium (Na) solid electrolytes (SEs) with halide doping have attracted serious interest due to their high ionic conductivity and great potential in solid-state Na batteries. While other halogens such as Cl, Br, I have been studied to enhance Na-ion transport in sulfide-type SEs, the introduction of fluorine (F) is rarely investigated. Moreover, synthetic parameters such as heating treatment temperatures strongly influence the structure and conductive properties of halide-doped sulfide SEs. Herein, we prepared x NaF·(1- x )Na 3 SbS 4 nanocomposites with varying concentration of F using a low-temperature (150 °C) heating method, and studied the effects of post-heating treatment on structure and conductivity. In-situ neutron diffraction was employed to investigate the structural evolution of X-doped Na 3 SbS 4 (X = F, Cl) during the post-heating treatment and cooling process. In addition, the post-heating treatment at 300 °C leads to increased ionic conductivity of x NaF·(1- x )Na 3 SbS 4 nanocomposites with various F contents. After 300 °C post-heating treatment, 0.2NaF·0.8Na 3 SbS 4 exhibited the highest conductivity of 0.48 mS cm −1 at room temperature. Moreover, improved electrochemical stability was also observed in Na-Sn symmetric cells, specially, with prolonged stable cycling for 300 h and much lower polarization voltage (<0.35 V). This work highlights the importance of post-heating treatment on the structural evolution and its role in exploring new halide-incorporated sulfide-type SEs, promoting the development of inorganic solid-state ionic conductors. • xNaF·(1-x)Na 3 SbS 4 nanocomposites were synthesized via low-temperature approaches. • The effects of post-heating treatment on structure and conductivity were investigated. • As the post-heating temperature increases, higher content of F gets incorporated NSS structure. • After 300 °C post-heating treatment, 0.2NaF·0.8Na 3 SbS 4 exhibited conductivity of 0.48 mS cm −1 at room temperature.
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