材料科学
催化作用
双功能
纳米材料
纳米技术
阴极
碳纳米管
复合数
化学工程
退火(玻璃)
电解质
电极
复合材料
物理化学
工程类
化学
生物化学
作者
Deyuan Li,Lanling Zhao,Qing Xia,Jun Wang,Xiaomeng Liu,Haoran Xu,Shulei Chou
标识
DOI:10.1002/adfm.202108153
摘要
Abstract Developing efficient cathode catalysts can largely promote the application of Li‐O 2 batteries (LOBs). In this work, the core‐shell MoS 2− x @CNTs composite is synthesized via a hydrothermal method with annealing and NaBH 4 reduction post‐processing, of which the defective MoS 2 nanoflakes are homogeneously coated on the 3D carbon nanotube (CNT) webs. It is found that it delivers superior bifunctional catalytic activities toward both oxygen reduction and evolution reactions for LOBs. On the one hand, the charge re‐distribution on MoS 2 nanoflakes with sulfur vacancies can be effectively constructed by the surface engineering strategy, remarkably boosting the kinetics of Li‐O 2 catalysis. On the other hand, the conductive and high surface area CNT network can facilitate mass transfer and provide enough free space for composite cathodes, accommodating the volume changes caused by the reversible formation and decomposition of discharge products during cycling. More importantly, the unique core‐shell architecture can not only enable fully covering of defective MoS 2 nanoflakes on CNT surfaces to avoid the contact between CNTs and electrolyte, distinctly suppressing side reactions, but also realize the exposure of more active sites to fulfill their catalytic properties. This work provides an insightful investigation on advanced catalysts and holds great potential for catalyst structural engineering in LOBs.
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