Amorphous and nanocrystalline halide solid electrolytes with enhanced sodium-ion conductivity

  • Ridley, Phillip; 
  • Nguyen, Long Hoang Bao; 
  • Sebti, Elias; 
  • Han, Bing; 
  • Duong, George; 
  • ... Jang, Jihyun; 
  • 외 11명
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초록

Solid-state batteries are an emerging energy storage technology with the potential to offer improved safety, higher energy density, and longer cycle life. The solid electrolyte is a key component that determines the electrochemical performance of the solid-state battery, especially at room temperature. Herein, we report a series of nanocrystalline and amorphous chloride solid electrolytes with composition Na2.25..xY0.25Zr0.75Cl6..x(1.375 <= x <= 2.000) possessing enhanced ionic conductivity. This study employs X-ray diffraction, transmission electron microscopy, solid-state nuclear magnetic resonance spectroscopy, and electrochemical impedance spectroscopy to study the relationship between composition, structure, and conductivity. These results indicate that NaCl-deficient compositions can form both nanocrystalline and amorphous phases. Moreover, preferred occupancy of prismatic Na+ local environments and fast exchange between such environments were also observed. These factors together contribute to a low activation energy for Na+ hopping, increased ionic conductivity, and improved electrochemical performance at higher cycling rates while operating at room temperature.

키워드

amorphous; halide; MAP 4: Demonstrate; Na-ion conductor; nanocrystalline; sodium, chloride; solid electrolyte; solid-state battery; FREE-VOLUME
제목
Amorphous and nanocrystalline halide solid electrolytes with enhanced sodium-ion conductivity
저자
Ridley, Phillip; Nguyen, Long Hoang Bao; Sebti, Elias; Han, Bing; Duong, George; Chen, Yu -Ting; Sayahpour, Baharak; Cronk, Ashley; Deysher, Grayson; Ham, So-Yeon; Oh, Jin An Sam; Wu, Erik A.; Tan, Darren H. S.; Doux, Jean-Marie; Clement, Raphaele; Jang, Jihyun; Meng, Ying Shirley
DOI
10.1016/j.matt.2023.12.028
발행일
2024-02-07
유형
Article
저널명
Matter
권
7
호
2
페이지
485 ~ 499