Issue 47, 2022

Porous perovskite CaMnO3/rGO hybrid as an efficient electrocatalyst in lithium–oxygen batteries

Abstract

In this work, we demonstrate a facile route for synthesizing a novel CaMnO3/reduced graphene oxide (CaMnO3/rGO) nanohybrid as a cathode catalyst in Li–O2 batteries. The experimental results show that the CaMnO3/rGO hybrid exhibits superior electrochemical properties compared to bare CaMnO3 perovskite oxide. Li–O2 batteries assembled with a CaMnO3/rGO cathode catalyst show a remarkable initial discharge capacity of 19 000 mA h g−1 at a high current density of 1000 mA g−1. Excellent cycling stability is achieved within 200 cycles at a restricted charge/discharge capacity of 2000 mA h g−1. The enhanced catalytic performance proposes the hybrid of mesoporous CaMnO3 perovskite oxide and rGO nanosheets as a potential electrocatalyst for next-generation Li–O2 batteries.

Graphical abstract: Porous perovskite CaMnO3/rGO hybrid as an efficient electrocatalyst in lithium–oxygen batteries

Supplementary files

Article information

Article type
Paper
Submitted
17 Aug 2022
Accepted
31 Oct 2022
First published
01 Nov 2022

Dalton Trans., 2022,51, 18284-18295

Porous perovskite CaMnO3/rGO hybrid as an efficient electrocatalyst in lithium–oxygen batteries

S. Biniazi, H. Asgharzadeh, I. Ahadzadeh, Ö. Aydın and M. Farsak, Dalton Trans., 2022, 51, 18284 DOI: 10.1039/D2DT02691K

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