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Single-step synthesis of highly conductive Na3PS4 solid electrolyte for sodium all solid-state batteries

delete2019-09-01
delete59
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OA
AI
H
Han Nguyen
A
Abhik Banerjee
王雪锋 (Xuefeng Wang)
D
Darren H. S. Tan
E
Erik A. Wu
J
Jean‐Marie Doux
R
Ryan Stephens
G
G. Verbist
Y
Ying Shirley Meng *
DOI:10.1016/j.jpowsour.2019.05.031delete
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Abstract

Abstract

En 中文
Na3PS4 has been demonstrated to be a promising solid electrolyte for all solid-state sodium ion batteries. Its high intrinsic ionic conductivity makes it ideal for high power battery applications. Although much research has been conducted on studying its structural and electrochemical properties, there is still no consensus on an optimal synthesis protocol despite a variety of reported Na3PS4 synthesis methods available. Here, we investigate the key parameters required to achieve single-step scalable synthesis of Na3PS4 solid electrolyte from its starting precursors. We determine that Na3PS4 solid electrolyte with high ionic conductivity (-0.2 mS cm(-1)) can be easily achieved in 20 min using a single synthesis step, representing a significant improvement over other existing energy-intensive multiple-step methods. The all solid-state battery constructed with this highly conductive Na3PS4 is able to deliver 185 mAh g(-1) capacity on the first discharge and excellent rate performance with a TiS2 cathode and a Na15Sn4 anode.
Keywords:
Ball milling
Sodium battery
Solid-state electrolyte
Sulfide
Synthesis
Na3PS4
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Journal

Journal of Power Sources cover
Journal of Power Sources
IF:
7.9
Papers:
3.7W
Citations:
15.0W

Organization

University of California System cover
University of California System
Scholars:
37.2W
Papers: 33.6W
Citations: 6.6K
U
University of California San Diego
Scholars:
4.6W
Papers: 3.5W
Citations: 924