Platinum Nanocrystals Embedded in Three-Dimensional Graphene for High-Performance Li-O2Batteries

Dong Cao, Yizhou Hao, Yahui Wang, Ying Bai, Yu Li, Xinran Wang, Jianhao Chen*, Chuan Wu*

*此作品的通讯作者

科研成果: 期刊稿件文章同行评审

15 引用 (Scopus)

摘要

Graphene is considered as a promising cathode candidate for Li-O2batteries because of its excellent electronic conductivity and oxygen adsorption capacity. However, for Li-O2batteries, the self-stacking effect caused by two-dimensional (2D) structural properties of graphene is not conducive to the rapid oxygen transport and mass transfer process, thereby affecting the electrode kinetics. Here, we successfully prepared three-dimensional (3D) graphene with different scales by plasma-enhanced chemical vapor deposition and physical pulverization strategies, in which CH4is the carbon source and H2/Ar mixed gas is the etching gas. Meanwhile, we fabricated 3D graphene-based Pt nanocatalysts by an ultraviolet-assisted construction strategy and then applied them in Li-O2batteries. Systematic studies reveal a special relevance between electrochemical performance and graphene particle size, and the smaller-sized 3D graphene can better maintain the microstructure distribution in both the Pt embedding process and electrochemical applications, which is beneficial to the transport of oxygen and Li ions, lowering the decomposition energy barrier of Li2O2, and further obtaining reduced charge overpotential (0.22 V) and prolonged cycle life for Li-O2batteries. Finally, we anticipate that this work could promote the practical application of 2D materials and larger-sized 3D materials in Li-O2batteries.

源语言英语
页(从-至)40921-40929
页数9
期刊ACS applied materials & interfaces
14
36
DOI
出版状态已出版 - 14 9月 2022

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