4.8 Article

Heterostructured Ceria-Titania-Supported Platinum Catalysts for the Water Gas Shift Reaction

期刊

ACS APPLIED MATERIALS & INTERFACES
卷 14, 期 6, 页码 8575-8586

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsami.1c22795

关键词

ceria-titania; heterostructure; Pt catalyst; water gas shift reaction; metal-support interaction

资金

  1. National Natural Science Foundation of China [21771117, 21805167, 22075166]
  2. Taishan Scholar Project of Shandong Province of China
  3. Future Program for Young Scholar of Shandong University [11190089964158]

向作者/读者索取更多资源

The 0.5Pt/3Ce-10Ti catalyst showed significant advantages in the water gas shift reaction. The heterostructured CeO2-TiO2 support effectively regulated the Pt status and influenced the adsorption ability of CO, resulting in improved reaction activity.
The water gas shift (WGS) reaction is a key process in the industrial hydrogen production and the development and application of the proton exchange membrane fuel cell. Metal oxide-supported highly dispersed Pt has been proved as an efficient catalyst for the WGS reaction. In this work, a series of supported 0.5Pt/xCe-10Ti (x = 1, 3, or 5) catalysts with different Ce/Ti molar ratios were prepared by a simple deposition-precipitation method. Compared with single TiO2- or CeO2-supported Pt catalysts, it was found that the 0.5Pt/3Ce-10Ti catalyst showed an obvious advantage in activity for the WGS reaction. In this catalyst, dispersed CeO2 nanoparticles were supported on the TiO2 sheets, and Pt single atoms and nanoparticles were located on CeO2 and at the boundary of TiO2 and CeO2, respectively. It found that the reduction ability of the supported Pt catalyst was remarkably improved; meanwhile, the adsorption strength of CO on the surface of 0.5Pt/3Ce-10Ti was moderate. The heterostructured CeO2-TiO2 support gave an effective regulation on the Pt status and further influenced the CO adsorption ability, inducing excellent WGS reaction activity. This work provides a reference for the development and application of heterostructured materials in heterogeneous catalysis.

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