울산대학교 | 나노에너지화학과
본문바로가기
ender

SNS Share

교수진
연구업적

연구업적

[류광선교수연구실]Synthesis of glass–ceramic Li7−2xZnxP2S8–xOxI oxysulfide solid electrolyte with high chemical stability for all-solid-state lithium batteries
작성자 관리자 작성일 2023-08-23 조회수 255

Title

Synthesis of glass–ceramic Li7−2xZnxP2S8–xOxI oxysulfide solid electrolyte with high chemical stability for all-solid-state lithium batteries

Author list

Geum-Ji Jang, Rajesh Rajagopal, Ga-Eun Hwang, Yu-Jin Jung, Kwang-Sun Ryu*

Publication date

2023/05

Citation information

Journal of Industrial and Engineering Chemistry, 2023, 121, 434-444

Abbreviation of Journal Name

Journal of Industrial and Engineering Chemistry

DOI

10.1016/j.jiec.2023.01.045

Graphical Abstract

(Do not change the size of box, and also do not remove the citation information.)

 external_image

Abstract

(superscript and subscript cannot be allowed.)

All-solid-state batteries remain problems to be overcome due to the high-temperature heat-treatment process, and the compatibility problem with Li metal as an anode. In this work, Li7P2S8I (LPSI) solid electrolyte with high ionic conductivity is prepared using a high-energy dry ball milling process with a low-temperature (200 °C) heat-treatment process. Then, ZnO are doped with LPSI solid electrolyte, particularly Zn2+ at the Li site and O2− at the S site, by our optimized synthesis process. The ZnO co-doping is confirmed by powder X-ray diffraction, Laser–Raman, field emission scanning electron microscopy, and nuclear magnetic resonance spectroscopy analysis. The ionic conductivity value of the prepared solid electrolytes is measured by electrochemical impedance spectroscopy analysis, and the prepared LPSI and Li6.9Zn0.05P2S7.95O0.05I solid electrolytes exhibit an ionic conductivity of (4.4 and 4.2) mS·cm−1, respectively, at room temperature. To evaluate the electrochemical stability of the prepared solid electrolyte, we perform cyclic voltammetry and galvanostatic discharge/charge voltage profiles analysis. In addition, the fabricated all-solid-state battery exhibits a high specific capacity of 165.4 mAh·g−1 (0.1 C), and a high-capacity retention rate of 95.2 %. Interestingly, ZnO co-doped LPSI solid electrolyte exhibits longer air-stability than the undoped LPSI solid electrolyte in dry air with 10 % humidity.