热解炭
阳极
表面改性
涂层
材料科学
碳纤维
化学工程
碳纳米管
电池(电)
离子
纳米技术
化学
电极
复合材料
复合数
热解
有机化学
功率(物理)
物理
物理化学
量子力学
工程类
作者
Zhitong Jia,Guoqiang Qin,Ao Li,Kaihan Hu,Huigui Wu,Guangchao Jin,Jing Zhu,Jing‐Bo Chen
出处
期刊:Langmuir
[American Chemical Society]
日期:2024-11-09
卷期号:40 (46): 24540-24549
被引量:6
标识
DOI:10.1021/acs.langmuir.4c03324
摘要
Titanium dioxide (TiO2) as an anode material for lithium-ion batteries (LIBs) has the advantages of tiny volume expansion, high operating voltage, and outstanding safety performance. However, due to the low conductivity of TiO2 and the slow diffusion rate of lithium ions (Li+), it is limited in the application of LIBs. Therefore, waxberry-like TiO2 comodified by pyrolytic carbon coating and carbon nanotubes was prepared in this work. The waxberry-like TiO2 with nanorods on its surface shortens the diffusion distance of Li+. Carbon nanotubes and waxberry-like TiO2 are tightly combined through electrostatic assembly and form a cross-linked conductive network to provide more electron transmission paths. A thin layer of pyrolytic carbon wraps carbon nanotubes and waxberry-like TiO2, which enhance the conductivity of the composites and ensure the structural integrity of the materials throughout the cycling process. The experimental data revealed that the discharge-specific capacity of TiO2@CNT@C is 170.5 mAh g-1 after 3000 cycles at a large current density of 5 A g-1, and the discharge-specific capacity is still 143 mAh g-1 at the superhigh rate of 10 A g-1, which provides excellent rate performance and cyclic stability. The efficient dual-carbon modification strategy could potentially be extended to other materials.
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