4.6 Review

Surface- and interface-engineered heterostructures for solar hydrogen generation

Journal

JOURNAL OF PHYSICS D-APPLIED PHYSICS
Volume 51, Issue 16, Pages -

Publisher

IOP PUBLISHING LTD
DOI: 10.1088/1361-6463/aab318

Keywords

heterostructures; photoelectrochemical water splitting; metal oxides; solar hydrogen; surface and interface engineering

Funding

  1. National Natural Science Foundation of China [51672210]
  2. Foundation for the Author of the National Excellent Doctoral Dissertation of China [201335]
  3. National Program for the Support of Top-Notch Young Professionals
  4. Fundamental Research Funds for the Central Universities

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Photoelectrochemical (PEC) water splitting based on semiconductor photoelectrodes provides a promising platform for reducing environmental pollution and solving the energy crisis by developing clean, sustainable and environmentally friendly hydrogen energy. In this context, metal oxides with their advantages including low cost, good chemical stability and environmental friendliness, have attracted extensive attention among the investigated candidates. However, the large bandgap, poor charge transfer ability and high charge recombination rate limit the PEC performance of metal oxides as photoelectrodes. To solve this limitation, many approaches toward enhanced PEC water splitting performance, which focus on surface and interface engineering, have been presented. In this topical review, we concentrate on the heterostructure design of some typical metal oxides with narrow bandgaps (e.g. Fe2O3, WO3, BiVO4 and Cu2O) as photoelectrodes. An overview of the surface- and interface-engineered heterostructures, including semiconductor heterojunctions, surface protection, surface passivation and cocatalyst decoration, will be given to introduce the recent advances in metal oxide heterostructures for PEC water splitting. This article aims to provide fundamental references and principles for designing metal oxide heterostructures with high activity and stability as photoelectrodes for PEC solar hydrogen generation.

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