期刊
JOURNAL OF PHYSICAL CHEMISTRY LETTERS
卷 5, 期 6, 页码 969-975出版社
AMER CHEMICAL SOC
DOI: 10.1021/jz500238z
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资金
- National Basic Research Program of China [2011CB936001]
- National Natural Science Foundation of China [21025729, 21207144]
- Research Device Development Project of Chinese Academy of Sciences [YZ201147]
For their unique properties, core shell bimetal nanostructures are currently of immense interest. However, their synthesis is not a trivial work, and most works have been conducted on nanoparticles. We report herein a new synthetic tactic for submonolyer-Pt coated ultrathin Au nanowires (NWs). Besides providing a strong electromagnetic field for Raman signal enhancing, the underlined Au NWs markedly enhanced the catalytic activity of Pt atoms through increasing their dispersity and altering their electronic state. The integration of excellent SERS and high catalytic activity within Au@Pt NWs enable it work as platform for catalyzed reaction study. As a proof of principle, the self-organized Au@Pt NWs thin film is employed in operando SERS monitoring of the p-nitrothiophenol reduction process. In addition to providing kinetic data for structure activity relationship study, the azo-intermidate independent path is also directly witnessed. This synthetic tactic can be extended to other metals, thus offering a general approach to modulate the physical/chemical properties of both core and shell metals.
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