Pt monolayer coating on complex network substrate with high catalytic activity for the hydrogen evolution reaction
Author(s) -
Man Li,
Qiang Ma,
Wei Zi,
Xiaojing Liu,
Xuejie Zhu,
Shengzhong Liu
Publication year - 2015
Publication title -
science advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.928
H-Index - 146
ISSN - 2375-2548
DOI - 10.1126/sciadv.1400268
Subject(s) - monolayer , materials science , substrate (aquarium) , layer (electronics) , x ray photoelectron spectroscopy , coating , quartz crystal microbalance , catalysis , cyclic voltammetry , chemical engineering , deposition (geology) , nanotechnology , chemistry , electrode , organic chemistry , electrochemistry , adsorption , paleontology , oceanography , sediment , engineering , biology , geology
A deposition process has been developed to fabricate a complete-monolayer Pt coating on a large-surface-area three-dimensional (3D) Ni foam substrate using a buffer layer (Ag or Au) strategy. The quartz crystal microbalance, current density analysis, cyclic voltammetry integration, and X-ray photoelectron spectroscopy results show that the monolayer deposition process accomplishes full coverage on the substrate and the deposition can be controlled to a single atomic layer thickness. To our knowledge, this is the first report on a complete-monolayer Pt coating on a 3D bulk substrate with complex fine structures; all prior literature reported on submonolayer or incomplete-monolayer coating. A thin underlayer of Ag or Au is found to be necessary to cover a very reactive Ni substrate to ensure complete-monolayer Pt coverage; otherwise, only an incomplete monolayer is formed. Moreover, the Pt monolayer is found to work as well as a thick Pt film for catalytic reactions. This development may pave a way to fabricating a high-activity Pt catalyst with minimal Pt usage.
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