Issue 20, 2022

Operando electrochemical fluorination to achieve Mn4+/Mn2+ double redox in a Li2MnO3-like cathode

Abstract

While the Li–Mn–O cathode is highly attractive owing to the low cost, earth-abundance and low environmental impact of its component elements, its large-scale deployment is severely impeded by its deficient energy density. Herein, we used the electrochemical voltage itself to induce oxygen release (O2− → O2) in a Li2MnO3-like cathode, electrolyte decomposition, and in operando doping of F into the lattice in the first cycle. The drastic changes in the cathode composition and structure (Li2MnO3→Li1.67Mn2.73+O2.1F0.2) activated a two-electron redox of Mn4+/2+ with an ultrahigh capacity of 326 mA h g−1. Both the design strategy of the two-electron redox and the electrochemical fluorination may be valuable for treating other electrodes as well.

Graphical abstract: Operando electrochemical fluorination to achieve Mn4+/Mn2+ double redox in a Li2MnO3-like cathode

Supplementary files

Article information

Article type
Communication
Submitted
10 Dec 2021
Accepted
28 Jan 2022
First published
02 Feb 2022

Chem. Commun., 2022,58, 3326-3329

Operando electrochemical fluorination to achieve Mn4+/Mn2+ double redox in a Li2MnO3-like cathode

G. Liu, H. Xu, Z. Wang and S. Li, Chem. Commun., 2022, 58, 3326 DOI: 10.1039/D1CC06865B

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