Issue 13, 2021

High-performance Zn2SnO4 anodes enabled by MOF-derived MnO decoration and carbon confinement for lithium-ion batteries

Abstract

Fabrication of porous micro/nanostructures with high electronic conductivity is very efficient for enhancing the electrochemical performance of transition metal oxide-based anode materials for lithium-ion batteries. Here, we successfully propose Zn2SnO4 composites functionalized using biomass-derived carbon and metal–organic framework derived MnO/C. The fabricated LC@Zn2SnO4@MnO/C composite exhibits superior electrochemical performance with a reversible capacity of 1185.6 mA h g−1 at 200 mA g−1 and maintains 552 mA h g−1 even at 2 A g−1 for 150 cycles. The significantly improved performance suggests that the unique structure constructed by MOF-derived oxide decoration and dual-carbon coating can efficiently enhance the material integrity and facilitate charge transfer upon repeated (de)lithiation processes, demonstrating a general strategy for the preparation of mixed-metal-oxide nanostructures for batteries with improved electrochemical performance.

Graphical abstract: High-performance Zn2SnO4 anodes enabled by MOF-derived MnO decoration and carbon confinement for lithium-ion batteries

Supplementary files

Article information

Article type
Paper
Submitted
18 Jan 2021
Accepted
03 Mar 2021
First published
04 Mar 2021

CrystEngComm, 2021,23, 2590-2598

High-performance Zn2SnO4 anodes enabled by MOF-derived MnO decoration and carbon confinement for lithium-ion batteries

H. Chen, J. Zhou, F. Guo, Y. Wang, Y. Chen, Y. Liang, Y. Xu and H. Zhang, CrystEngComm, 2021, 23, 2590 DOI: 10.1039/D1CE00084E

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