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Intercalación de nanopartículas de bismuto en MXeno Ti3C2 como material de ánodo para baterías de iones de litio
Mengxiang Chen1, Kai Li1, Yanqinpeng Lu1
1Institute of Advanced Materials and Flexible Electronics (IAMFE), School of Chemistry and Materials Science, Jiangsu Key Laboratory of New Energy Devices & Interface Science, Reading Academy, Nanjing University of Information Science & Technology Nanjing, 210044, China. yizhou.zhang@nuist.edu.cn.
Abstract:
Bismuth (Bi) metal is considered an ideal anode material for lithium-ion batteries (LIBs). However, its poor structural stability during cycling, caused by expansion and cracking, remains a significant challenge. Here, we design a Bi/MXene composite via a one-step reduction process, to address these issues. Bi nanoparticles are uniformly incorporated into Ti3C2 MXene layers, enhancing structural stability and preventing agglomeration. The Bi/MXene nanosheet delivers an exceptional specific capacity, exceeding 300 mAh g-1 over 500 cycles at 1.0 A g-1. Its electrochemical performance is controlled by both ion-diffusion and pseudocapacitive mechanisms, ensuring outstanding cycling performance.
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