4.7 Article

Z-Schematic CO2 Reduction to CO through Interparticle Electron Transfer between SrTiO3:Rh of a Reducing Photocatalyst and BiVO4 of a Water Oxidation Photocatalyst under Visible Light

Journal

ACS APPLIED ENERGY MATERIALS
Volume 3, Issue 10, Pages 10001-10007

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsaem.0c01684

Keywords

CO2 reduction; artificial photosynthesis; Z-scheme system; aggregation; metal oxide

Funding

  1. JSPS KAKENHI [17H06433, 17H06440, 17H01217, 18J22528]
  2. Grants-in-Aid for Scientific Research [17H06440, 17H01217, 18J22528] Funding Source: KAKEN

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We have successfully constructed a Z-scheme system in a simple suspension system employing only metal oxide photocatalyst materials for CO2 reduction using water as an electron donor under visible light irradiation. The Z-scheme photocatalyst using SrTiO3:Rh as a reducing photocatalyst and BiVO4 as an O-2-evolving photocatalyst working via interparticle electron transfer without electron mediators reduced CO2 to CO using water as an electron donor under visible light. Loading a Ag or Au cocatalyst on SrTiO3:Rh enhanced CO formation in the photocatalytic CO2 reduction and also photoelectrochemical CO2 reduction employing a SrTiO3:Rh photocathode. The suitable pH for Z-schematic CO2 reduction without electron mediators was 3.5-S at which SrTiO3:Rh and BiVO4 particles aggregated well with each other, resulting in the achievement of Z-schematic CO2 reduction by efficient interparticle electron transfer. It is notable that the Z-schematic CO2 reduction proceeded using just photocatalyst powders, water, and CO2 because of self-pH-adjustment even without any additives inducing aggregation between SrTiO3:Rh and BiVO4 particles.

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