4.8 Article

Surface Species in Photocatalytic Methanol Reforming on Pt/TiO2(110): Learning from Surface Science Experiments for Catalytically Relevant Conditions

期刊

ACS CATALYSIS
卷 10, 期 7, 页码 4080-4091

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acscatal.0c00260

关键词

surface species; photocatalytic conditions; Pt cluster loaded TiO2(110)

资金

  1. DFG [HE3435/22-1]
  2. Germany's Excellence Strategy [EXC 2089/1-390776260]
  3. Luxembourg National Research Fund (FNR) [12531916]
  4. TUM International Graduate School of Science and Engineering (TUM-IGSSE)

向作者/读者索取更多资源

Photocatalytic hydrogen evolution from methanol is a standard test reaction for photocatalyst materials. Surprisingly, the exact chemical mechanism is still widely discussed in the literature. In order to disentangle photochemical from thermal reaction steps and gain insights on the atomic level, we use a Pt cluster-loaded TiO2(110) photocatalyst in very well-defined environments. Using Auger electron spectroscopy, temperature-programmed desorption/reaction, isotopic labeling, and isothermal photoreactions, it is possible to identify the surface species present on the catalyst under photocatalytic conditions. Furthermore, an initial conditioning of the photocatalyst is observed and attributed to thermal dehydrogenation of methanol to CO species on the cluster. The analysis of the isothermal photoreactions reveals that the photo-oxidation kinetics are not significantly affected by cocatalyst loading. The observed conversion and product distribution of formaldehyde and methyl formate can be rationalized with kinetic parameters gained from the bare TiO2(110) crystal. The work leads to a detailed mechanistic understanding of the surface species and paves the way for an educated microkinetic modeling approach, which may be extended to a variety of noble metal cocatalysts and other TiO2 modifications.

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