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Fabrication of Nb2O5/Carbon Submicrostructures for Advanced Lithium-Ion Battery Anodes
Authors:Prof. Jujun Yuan  Haishan He  Xiaofan Li  Yunfei Gan  Meiqi Mu  Prof. Huajun Yu  Prof. F. Kuang  Prof. Xiaokang Li  Prof. Xianke Zhang  Prof. Jun Liu
Affiliation:1. South China University of Technology, School of Materials Science and Engineering, 510641 Guangzhou, P. R. China;2. South China University of Technology, School of Materials Science and Engineering, 510641 Guangzhou, P. R. China

College of Chemistry and Chemical Engineering, Gannan Normal University, 341000 Ganzhou, P. R. China

Abstract:Nb2O5 possesses superior fast Li+ storage capability for LIB anodes, benefiting from its fast pseudocapacitive behavior and low volumetric change within the cycling processes. However, the poor electric conductivity for Nb2O5 restricts its reaction kinetics and rate property. Herein, Nb2O5/carbon (C) submicrostructures are fabricated by solvothermal method followed by calcination process. The Nb2O5/C submicrostructures exhibit outstanding rate behavior and cyclic performance (332 (194) mAh g−1 after 1000 cycles at 1 (5) A g−1). The superior electrochemical property is attributed to the distinctive structure for Nb2O5/C submicrostructures, in which Nb2O5 nanoparticles uniformly distributed within Nb2O5/C composite can protect Nb2O5 nanoparticles from agglomeration, and the porous carbon matrix can enhance electron/ion conductivity. This work furnishes a novel strategy for fabricating Nb2O5/C submicrostructures with superior Li+ storage performance, which can be potentially used to design other metal oxide/C submicrostructures for second battery anode.
Keywords:anodes  lithium ion batteries  Nb2O5/carbon  submicrostructures  rate performances  solvothermal methods
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