材料科学
三元运算
空位缺陷
拓扑绝缘体
阳极
拓扑(电路)
纳米技术
硫系化合物
电极
光电子学
凝聚态物理
物理化学
化学
物理
计算机科学
程序设计语言
数学
组合数学
作者
Lijuan Hu,Changyu Liu,Fan Zhang,Hui Wang,Beibei Wang
出处
期刊:Small
[Wiley]
日期:2024-05-11
标识
DOI:10.1002/smll.202311079
摘要
Abstract Ternary topological insulators have attracted worldwide attention because of their broad application prospects in fields such as magnetism, optics, electronics, and quantum computing. However, their potential and electrochemical mechanisms in sodium ion batteries (SIBs) and hybrid capacitors (SIHCs) have not been fully studied. Herein, a composite material comprising vacancy‐defects ternary topological insulator Bi 2 Se 2 Te encapsulated in mesoporous carbon spheres (Bi 2 Se 2 Te@C) is designed. Bi 2 Se 2 Te with ample vacancy‐defects has a wide interlayer spacing to enable frequent insertion/extraction of Na + and boost reaction kinetics within the electrode. Meanwhile, the Bi 2 Se 2 Te@C with optimized yolk–shell structure can buffer the volume variation without breaking the outer protective carbon shell, ensuring structural stability and integrity. As expected, the Bi 2 Se 2 Te@C electrode delivers high reversible capacity and excellent rate capability in half SIB cells. Various electrochemical analyses and theoretical calculations manifest that Bi 2 Se 2 Te@C anode confirms the synergistic effect of ternary chalcogenide systems and suitable void space yolk‐shell structure. Consequently, the full cells of SIB and SIHC coupled with Bi 2 Se 2 Te@C anode exhibit good performance and high energy/power density, indicating its widespread practical applications. This design is expected to offer a reliable strategy for further exploring advanced topological insulators in Na + ‐based storage systems.
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