Issue 4, 2020

Aqueous solution synthesis of Na3SbS4–Na2WS4 superionic conductors

Abstract

We report a route for the synthesis of Na3SbS4–Na2WS4 superionic conductors from aqueous solution. Na3SbS4–Na2WS4 has the highest high sodium-ion conductivity (4.28 mS cm−1 at 25 °C) of reported sulfide-based solid electrolytes prepared via liquid-phase methods. The antimony in Na3SbS4 is replaced by tungsten in a higher valence state, which is charge-compensated by sodium vacancies in the form Na3−xSb1−xWxS4. Introducing sodium vacancies while maintaining the 3D conduction pathways increases the pre-exponential factor in the Arrhenius plots of ionic conduction. The development of a facile synthetic protocol, as well as the high ionic conductivity and excellent chemical stability of Na3SbS4–Na2WS4 in the presence of water, is a major step towards the realization of all-solid-state sodium batteries.

Graphical abstract: Aqueous solution synthesis of Na3SbS4–Na2WS4 superionic conductors

Supplementary files

Article information

Article type
Paper
Submitted
28 Feb 2019
Accepted
17 Dec 2019
First published
17 Dec 2019

J. Mater. Chem. A, 2020,8, 1947-1954

Aqueous solution synthesis of Na3SbS4–Na2WS4 superionic conductors

S. Yubuchi, A. Ito, N. Masuzawa, A. Sakuda, A. Hayashi and M. Tatsumisago, J. Mater. Chem. A, 2020, 8, 1947 DOI: 10.1039/C9TA02246E

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