4.8 Article

Facile Fabrication of Sandwich Structured WO3 Nanoplate Arrays for Efficient Photoelectrochemical Water Splitting

Journal

ACS APPLIED MATERIALS & INTERFACES
Volume 8, Issue 28, Pages 18089-18096

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acsami.6b04887

Keywords

WO3; sandwich structure; photoelectrode; water splitting; hydrogen

Funding

  1. National Natural Science Foundation of China [51236007, 51323011]
  2. China Postdoctoral Science Foundation [2014M560768]
  3. China Fundamental Research Funds for the Central Universities [xjj2015041]

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Herein, sandwich structured tungsten trioxide (WO3) nanoplate arrays were first synthesized for photoelectrochemical (PEC) water splitting-via a facile hydrothermal method followed by an annealing treatment. It was demonstrated that the annealing temperature played an important role in determining the morphology and crystal phase of the WO3 film. Only when the hydrothermally prepared precursor was annealed at 500 degrees C could the sandwich structured WO3 nanoplates be achieved, probably due to the crystalline phase transition and increased thermal stress during the annealing process. The sandwich structured WO3 photoanode exhibited a photocurrent density of 1.88 mA cm(-2) and an incident photon-to-current conversion efficiency (IPCE) as high as 65% at 400 nm in neutral Na2SO4 solution under AM 1.5G illumination. To our knowledge, this value is one of the best PEC performances for WO3 photoanodes. Meanwhile, simultaneous hydrogen and oxygen evolution was demonstrated for the PEC water splitting. It was concluded that the high PEC performance should be attributed to the large electrochemically active surface area and active monoclinic phase. The present study can provide guidance to develop highly efficient nanostructured photoelectrodes with the favorable morphology.

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