Unique structure of active platinum-bismuth site for oxidation of carbon monoxide

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作者
Bing Nan
Qiang Fu
Jing Yu
Miao Shu
Lu-Lu Zhou
Jinying Li
Wei-Wei Wang
Chun-Jiang Jia
Chao Ma
Jun-Xiang Chen
Lina Li
Rui Si
机构
[1] Chinese Academy of Sciences,Shanghai Institute of Applied Physics
[2] University of Chinese Academy of Science,Key Laboratory for Colloid and Interface Chemistry, Key Laboratory of Special Aggregated Materials, School of Chemistry and Chemical Engineering
[3] Shandong University,Center for High Resolution Electron Microscopy, College of Materials Science and Engineering
[4] Shanghai Institute of Measurement and Testing Technology,Division of China
[5] Hunan University,Shanghai Synchrotron Radiation Facility
[6] TILON Group Technology Limited,undefined
[7] Zhangjiang Laboratory,undefined
[8] Shanghai Advanced Research Institute,undefined
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摘要
As the technology development, the future advanced combustion engines must be designed to perform at a low temperature. Thus, it is a great challenge to synthesize high active and stable catalysts to resolve exhaust below 100 °C. Here, we report that bismuth as a dopant is added to form platinum-bismuth cluster on silica for CO oxidation. The highly reducible oxygen species provided by surface metal-oxide (M-O) interface could be activated by CO at low temperature (~50 °C) with a high CO2 production rate of 487 μmolCO2·gPt−1·s−1 at 110 °C. Experiment data combined with density functional calculation (DFT) results demonstrate that Pt cluster with surface Pt−O−Bi structure is the active site for CO oxidation via providing moderate CO adsorption and activating CO molecules with electron transformation between platinum atom and carbon monoxide. These findings provide a unique and general approach towards design of potential excellent performance catalysts for redox reaction.
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