4.7 Article

Collisional Electron Transfer Route between Homogeneous Porphyrin Dye and Catalytic TiO2/Re(I) Particles for CO2 Reduction

期刊

ACS APPLIED ENERGY MATERIALS
卷 3, 期 12, 页码 11581-11596

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acsaem.0c01300

关键词

Zn porphyrin photosensitizer; diffusion collisional electron transfer; photochemical CO2 reduction; photocatalysis; supported catalysis

资金

  1. Basic Science Research Program through the National Research Foundation of Korea (NRF) - Ministry of Education [NRF-2014R1A6A1030732]
  2. MSIT of Republic of Korea [NRF-2017M1A2A2046738]

向作者/读者索取更多资源

Dye detachment issue in the TiO2-mediated dye-sensitized photocatalytic system engenders an electron injection route based on collisional quenching between the detached solution-phase dye and dispersed n-type TiO2 particles, in addition to the general fast electron injection pathway from dye chemisorbed on TiO2. For porphyrin-sensitized hetero-binary hybrids prepared by mixing a solution-phase Zn porphyrin sensitizer (ZnP) and heterogeneous Re(I) molecular catalyst-immobilized TiO2 particles (TiO2/Re(I)), we found that without any dye immobilization on the TiO2 surface, the dissolved porphyrin dye can effectively transport its excited-state electrons to the heterogeneous catalytic TiO2/Re(I) particles via a collisional electron transfer pathway, which is relatively unstudied and thus an interesting topic in the dye-sensitized semiconductor photocatalytic system. The better light-harvesting ability of porphyrin in solution and the TiO2-induced stabilization of the molecular Re(I) catalyst raised the photochemical CO2-to-CO conversion activity of the semiheterogeneous system (porphyrin + TiO2/Re(I) catalyst) above that of the homogeneous system (porphyrin + Re(I) catalyst) and the heterogeneous ternary hybrid (porphyrin/TiO2/Re(I) catalyst).

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