催化作用
微尺度化学
粒径
纳米颗粒
惰性
化学工程
电子转移
电催化剂
氢
粒子(生态学)
纳米技术
材料科学
化学
氧气
电极
光化学
电化学
物理化学
有机化学
数学教育
工程类
地质学
海洋学
数学
作者
Tanyuan Wang,Dongliang Gao,Junqiao Zhuo,Zhiwei Zhu,Pagona Papakonstantinou,Yan Li,Meixian Li
标识
DOI:10.1002/chem.201301406
摘要
Abstract MoS 2 particles with different size distributions were prepared by simple ultrasonication of bulk MoS 2 followed by gradient centrifugation. Relative to the inert microscale MoS 2 , nanoscale MoS 2 showed significantly improved catalytic activity toward the oxygen‐reduction reaction (ORR) and hydrogen‐evolution reaction (HER). The decrease in particle size was accompanied by an increase in catalytic activity. Particles with a size of around 2 nm exhibited the best dual ORR and HER performance with a four‐electron ORR process and an HER onset potential of −0.16 V versus the standard hydrogen electrode (SHE). This is the first investigation on the size‐dependent effect of the ORR activity of MoS 2 , and a four‐electron transfer route was found. The exposed abundant Mo edges of the MoS 2 nanoparticles were proven to be responsible for the high ORR catalytic activity, whereas the origin of the improved HER activity of the nanoparticles was attributed to the plentiful exposed S edges. This newly discovered process provides a simple protocol to produce inexpensive highly active MoS 2 catalysts that could easily be scaled up. Hence, it opens up possibilities for wide applications of MoS 2 nanoparticles in the fields of energy conversion and storage.
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