4.8 Article

A Combination of Two Visible-Light Responsive Photocatalysts for Achieving the Z-Scheme in the Solid State

Journal

ACS NANO
Volume 5, Issue 5, Pages 4084-4090

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/nn2006738

Keywords

photocatalysis; artificial photosynthesis; hydrogen; solid-state; z-scheme; water-splitting

Funding

  1. Ministry of Education, Science and Technology [R31-10013]
  2. National Research Laboratory (NRL), Korean Science and Engineering Foundation (KOSEF) [2000-N-NL-01-C-257]

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The light reaction In natural photosynthesis is generally recognized as one of the most efficient mechanisms for converting solar energy into other energy sources. We report herein on a novel strategy for generating H-2 fuel via an artificial Z-scheme mechanism by mimicking the natural photosynthesis that occurs in green plants. Designing a desirable photocatalyst by mimicking the Z-scheme mechanism leads to a conduction band that is sufficiently high to reduce protons, thus decreasing the probability of charge recombination. We combined two visible light sensitive photocatalysts, CdS and carbon-doped TiO2, with different band structures. The used of this combination, that is, CdS/Au/TiO1.96C0.04, resulted in the successful transfer of photogenerated electrons to a higher energy level in the form of the letter 'Z'. The system produced about a 4 times higher amount of H-2 under irradiation by visible light than CdS/Au/TiO2. The findings reported herein describe an innovative route to harvesting energy by mimicking natural photosynthesis, and is independent of fossil fuels.

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