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Hetero-Phase MoO2/Cu2–xSe Nanocomposites Distributed in Porous Octahedral Carbon Networks for High-Performance Lithium Storage.

Authors :
Zhong, Ming
Guo, Xue
Li, Lingling
Li, Yun-Wu
Zhao, Kun
Peng, Hui
Zhang, Xiaobo
Source :
ACS Applied Nano Materials; 11/10/2023, Vol. 6 Issue 21, p20018-20027, 10p
Publication Year :
2023

Abstract

Owing to the mixed insertion and multielectron conversion reaction mechanisms, nonstoichiometric copper selenide (Cu<subscript>2–x</subscript>Se) has been known as a potential anode for lithium-ion batteries. However, huge volume changes during discharge and charge limit its ability for lithium-ion storage. Constructing heterophase nanocomposite uniformly distributed in the carbon network has been recognized as an effective approach to address the above issue. In this work, polyoxometalate-based metal–organic frameworks were used as the self-template to derive octahedral mesoporous carbon-coated heterophase copper selenide and molybdenum dioxide (MoO<subscript>2</subscript>/Cu<subscript>2–x</subscript>Se@C) nanocomposites, and the phase transformation of copper selenides from CuSe to Cu<subscript>2–x</subscript>Se can be achieved by tuning the pyrolysis temperature, thus optimizing the electrochemical performance. As a result, the optimized electrode delivers a high reversible specific capacity of 864.8 mAh g<superscript>–1</superscript> at 0.2 A g<superscript>–1</superscript> after 100 cycles, an excellent rate capability with a capacity of 480.9 mAh g<superscript>–1</superscript> at 2.0 A g<superscript>–1</superscript>, and a long-term stability up to 500 cycles with a capacity decay rate per cycle of only 0.003%. Also, the reaction mechanism and structural stability after cycling were analyzed in detail. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
25740970
Volume :
6
Issue :
21
Database :
Complementary Index
Journal :
ACS Applied Nano Materials
Publication Type :
Academic Journal
Accession number :
173605265
Full Text :
https://doi.org/10.1021/acsanm.3c03824