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Ceramic-Salt Composite Electrolytes from Cold Sintering

delete2019-04-01
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PRE
AI
W
Wonho Lee
C
Christopher K. Lyon
J
Joo‐Hwan Seo
R
Raymond Lopez-Hallman
Y
Yongjun Leng
C
Chao‐Yang Wang
M
Michael A. Hickner
C
Clive A. Randall
E
Enrique D. Gomez *
DOI:10.1002/adfm.201807872delete
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摘要

摘要

En 中文
The development of solid electrolytes with the combination of high ionic conductivity, electrochemical stability, and resistance to Li dendrites continues to be a challenge. A promising approach is to create inorganic-organic composites, where multiple components provide the needed properties, but the high sintering temperature of materials such as ceramics precludes close integration or co-sintering. Here, new ceramic-salt composite electrolytes that are cold sintered at 130 degrees C are demonstrated. As a model system, composites of Li1.5Al0.5Ge1.5(PO4)(3) (LAGP) or Li1+x+yAlxTi2-xSiyP3-yO12 (LATP) with bis(trifluoromethanesulfonyl)imide (LiTFSI) salts are cold sintered. The resulting LAGP-LiTFSI and LATP-LiTFSI composites exhibit high relative densities of about 90% and ionic conductivities in excess of 10(-4) S cm(-1) at 20 degrees C, which are comparable with the values obtained from LAGP and LATP sintered above 800 degrees C. It is also demonstrated that cold sintered LAGP-LiTFSI is electrochemically stable in Li symmetric cells over 1800 h at 0.2 mAh cm(-2). Cold sintering provides a new approach for bridging the gap in processing temperatures of different materials, thereby enabling high-performance composites for electrochemical systems.
Keyword:
all solid state Li metal batteries
ceramic electrolytes
composite electrolytes
ionic conductivity
low temperature sintering
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期刊

Advanced Functional Materials 封面图
Advanced Functional Materials
IF:
19
论文数:
3.5W
被引数:
32.1W

机构

P
pennsylvania state university - university park
学者数:
1.3W
论文数: 1.0W
被引数: 24
P
Pennsylvania State University
学者数:
3.0W
论文数: 2.6W
被引数: 7.2W
P
pennsylvania commonwealth system of higher education (pcshe)
学者数:
12.9W
论文数: 11.7W
被引数: 177
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