4.8 Article

Modulating the surface defects of titanium oxides and consequent reactivity of Pt catalysts

Journal

CHEMICAL SCIENCE
Volume 10, Issue 45, Pages 10531-10536

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9sc03119g

Keywords

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Funding

  1. National Key Research and Development Program of China [2016YFB0600901]
  2. National Science Foundation of China [21525626, 91645106, 21603159]
  3. Program of Introducing Talents of Discipline to Universities [B06006]

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In heterogeneous catalysis, it is widely believed that the surface states of catalyst supports can strongly influence the catalytic performance, because active components are generally anchored on supports. This paper describes a detailed understanding of the influence of surface defects of TiO2 supports on the catalytic properties of Pt catalysts. Pt was deposited on reduced (r-), hydroxylated (h-), and oxidized (o-) TiO2 surfaces, respectively, and the different surface states of TiO2 not only lead to differences in metal dispersion, but also distinct electronic interactions between the metal and the support. The highest reactivity for catalytic CO oxidation can be achieved over the Pt catalyst supported on reduced TiO2 with surface oxygen vacancies. The turnover frequency (TOF) of this catalyst is determined to be similar to 11 times higher than that of Pt supported on oxidized TiO2. More importantly, the reactivity is seen to increase in the sequence of Pt/o-TiO2 < Pt/h-TiO2 < Pt/r-TiO2, which is well consistent with the trend of the calculated Bader charge of Pt.

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