Eye-Readable Detection and Oxidation of CO with a Platinum-Based Catalyst and a Binuclear Rhodium Complex
- PMID: 31197913
- DOI: 10.1002/anie.201905567
Eye-Readable Detection and Oxidation of CO with a Platinum-Based Catalyst and a Binuclear Rhodium Complex
Abstract
Toxic gases that are colorless and odorless, such as CO, are a major environmental concern and require early detection to prevent serious toxicological effects. In this study, a unique system (Pt/HMSs-BRC) was fabricated by combining a catalyst (Pt/hollow mesoporous silica spheres, Pt/HMSs) with a silica gel containing an adsorbed chromogenic probe (binuclear rhodium complex, BRC). The process is a simple method to prepare well-dispersed and uniform Pt nanoparticles. The Pt/HMSs-BRC materials demonstrated early CO detection and excellent catalytic performance for CO oxidation. The probe exhibited remarkable color modulation from gray-violet to light-yellow when exposed to CO concentration levels above 50 ppm, and the color of the chromogenic probe was fully recoverable. By a kinetics-assisted discrimination method and DFT calculations, it was found that the corner Pt sites are the dominant active sites for CO oxidation.
Keywords: CO oxidation; binuclear rhodium complexes; heterogeneous catalysis; platinum; sensors.
© 2019 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.
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References
-
- None
-
- J. Lelieveld, J. S. Evans, M. Fnais, D. Giannadaki, A. Pozzer, Nature 2015, 525, 367;
-
- T. Salthammer, Y. Zhang, J. Mo, H. M. Koch, C. J. Weschler, Angew. Chem. Int. Ed. 2018, 57, 12228-12263;
-
- Angew. Chem. 2018, 130, 12406-12443.
-
- P. Q. Tan, Z. Y. Hu, M. di Lou, Z. J. Li, Energy 2012, 39, 356-362.
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