原子层沉积
阴极
材料科学
无定形固体
图层(电子)
石墨
无定形碳
碳纤维
化学工程
电极
纳米技术
光电子学
复合材料
电气工程
化学
工程类
物理化学
有机化学
复合数
作者
Ming Song,Hua Tan,Xianglin Li,Alfred Iing Yoong Tok,Pei Liang,Dongliang Chao,Hong Jin Fan
标识
DOI:10.1002/smtd.201900274
摘要
Abstract Li–O 2 batteries (LOB) potentially have the highest specific capacity among all types of metal‐ion batteries but suffer severely from cycle instability and low energy efficiency. In this work, an integrated cathode is fabricated that contains an amorphous MoS 2 thin layer deposited on a 3D conductive carbon scaffold to improve the energy efficiency to ≈83% and cycle life up to 190 cycles. An advanced pressure‐tuned stop‐flow atomic layer deposition (ALD) method is employed to deposit a ≈5 nm thick amorphous MoS 2 layer on carbon nanotube forest‐covered graphite foam. It is established that this integrated 3D cathode exhibits high catalytic activity for both oxygen reduction reaction and oxygen evolution reaction. The benefit of the ALD MoS 2 in lowering the energy barrier is also supported by first‐principles calculations. Finally, quasi‐solid state flexible LOBs are also assembled that can be stably discharged up to 6 d. This new and rational design of cathode may provide a new direction for achieving high‐performance flexible Li–O 2 batteries.
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