Li2Se@C composite for dual-function lithium supplementation and conductivity enhancement in high-energy-density lithium-ion batteries

Guangyao Xiang, Xiaohui Yan, Xiaosong Xiong, Yudong Zong, Shaukat Aziz, Zhi Zhu, Yuping Wu

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摘要

The minimization of irreversible active lithium loss is a critical challenge in rechargeable lithium batteries, especially for grid-storage applications where high energy density and low life-cycle cost are essential. In this study, a Li2Se@C composite was synthesized via a simple carbothermal reduction method as a lithium supplement for lithium-ion batteries. The carbon-coated Li2Se exhibits enhanced air stability, retaining its structural integrity without degradation for 5 h in air with 50 % humidity. Electrochemical evaluations conducted in LiFePO4||graphite full cells demonstrate that the Li2Se@C composite effectively compensates for lithium loss during solid electrolyte interphase (SEI) formation, resulting in an increase of the initial capacity from 113 mAh g−1 to 126 mAh g−1. Moreover, it enhances cycling stability, with capacity retention improving from 84 % to 89 % after 500 cycles. Characterization shows that delithiation of Li2Se generates amorphous selenium, which forms selenium-carbon bonds to improve cathode conductivity and stability. Electrochemical calculations further confirm that the Li2Se-carbon heterojunction facilitates electron transfer, significantly boosting conductivity. These results highlight the potential of Li2Se@C as a reliable lithium supplement, offering improved energy density and overall battery performance.

源语言英语
文章编号101894
期刊Materials Today Energy
51
DOI
出版状态已出版 - 7月 2025
已对外发布

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