4.6 Article

Hybrid Mesoporous-Silica Materials Functionalized by PtII Complexes: Correlation between the Spatial Distribution of the Active Center, Photoluminescence Emission, and Photocatalytic Activity

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 18, 期 36, 页码 11371-11378

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201200959

关键词

luminescence; mesoporous materials; photocatalysis; platinum; silica

资金

  1. Ministry of Education, Culture, Sports, Science and Technology of Japan [21760629]
  2. Grants-in-Aid for Scientific Research [21760629, 23656511, 23360356] Funding Source: KAKEN

向作者/读者索取更多资源

[Pt(tpy)cl]cl (tpy: terpyridine) was successfully anchored to a series of mesoporous-silica materials that were modified with (3-aminopropyl)triethoxysilane with the aim of developing new inorganic-organic hybrid photocatalysts. Herein, the relationship between the luminescence characteristics and photocatalytic activities of these materials is examined as a function of Pt loading to define the spatial distribution of the Pt complex in the mesoporous channel. At low Pt loading, the Pt complex is located as an isolated species and exhibits strong photo-luminescence emission at room temperature owing to metal-to-ligand charge-transfer ((MLCT)-M-3) transitions (at about 530 nm). Energy- and/or electron-transfer from (MLCT)-M-3 to O-2 generate potentially active oxygen species, which are capable of promoting the selective photooxidation of styrene derivatives. On the other hand, short Pt center dot center dot center dot Pt interactions are prominent at high loading and the metal-metal-to-ligand charge-transfer ((MMLCT)-M-3) transition is at about 620 nm. Such Pt complexes, which are situated close to each other, efficiently catalyze H-2-evolution reactions in aqueous media in the presence of a sacrificial electron donor (EDTA) under visible-light irradiation. This study also investigates the effect of nanoconfinement on anchored guest complexes by considering the differences between the pore dimensions and structures of mesoporous-silica materials.

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