One-Dimensional van der Waals V2Se9 as a Conversion-Type Anode Material for Advanced Li Rechargeable Batteries

阳极 范德瓦尔斯力 材料科学 电极 锂(药物) 电化学 电池(电) 同步加速器 化学工程 纳米技术 化学 物理化学 热力学 分子 有机化学 医学 功率(物理) 物理 核物理学 工程类 内分泌学
作者
Sunhyun Hwang,Seungbae Oh,Woo Sung Choi,Sudong Chae,Jungyoon Ahn,Wontae Lee,Hyung‐Suk Oh,Jae‐Young Choi,Won‐Sub Yoon
出处
期刊:Journal of Alloys and Compounds [Elsevier BV]
卷期号:980: 173541-173541 被引量:1
标识
DOI:10.1016/j.jallcom.2024.173541
摘要

Volume expansion of active materials during lithium storage is one of the main issues in Li-ion batteries (LIBs) that should be addressed. In particular, large volume changes and particle cracking are problematic for electrode materials based on conversion reaction, which are considered attractive anode materials with high energy densities. In this study, a one-dimensional van der Waals (1D vdW) material, V2Se9, is proposed as a conversion-type anode material for LIBs. The V2Se9 electrode material has a 1D chain molecular structure with vdW interactions between chains to form a bulk crystal structure. The spaces between the 1D chains act as structural buffers and provide short Li+ diffusion paths that can improve the electrochemical performance of the electrode materials. The V2Se9 electrode exhibits a high reversible capacity of 563.3 mAh g-1 at 100 mA g-1 and a high rate capability of 109.1 mAh g-1 at 3200 mA g-1. The capacity retention of V2Se9 electrodes is 83.72% after 100 cycles. Synchrotron X-ray diffraction and X-ray absorption spectroscopy reveal the formation of Li2Se and V metal, indicating that Li ion storage occurs via the conversion reaction. The structural stability of V2Se9 is demonstrated using SEM measurements of the discharged and charged V2Se9 electrodes during cycling. These results demonstrate the reaction mechanism of V2Se9 and highlight the potential of 1D vdW materials as high-performance anode materials in LIBs.
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