4.6 Article

Enhanced Photoelectrocatalytic Activity of BiOI Nanoplate-Zinc Oxide Nanorod p-n Heterojunction

Journal

CHEMISTRY-A EUROPEAN JOURNAL
Volume 21, Issue 43, Pages 15360-15368

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201501183

Keywords

electron transport; nanostructures; photoelectrochemical performance; p-n heterojunction; solvothermal methods

Funding

  1. Natural Science Foundation of China [21306030, 21203036]
  2. Guangdong Natural Science Foundation [2013040015229, 2014A030313520]
  3. Program Foundation of the second batch of innovation teams of Guangzhou Bureau of Education [13C04]
  4. Scientific Research Project of Guangzhou Municipal Colleges and Universities [1201410618]
  5. Fresh Talent Program of Guangzhou University [201302]
  6. National Abroad Studying Foundation of China
  7. Australian Research Council (ARC) [DP110102877, DP130104459]

Ask authors/readers for more resources

The development of highly efficient and robust photocatalysts has attracted great attention for solving the global energy crisis and environmental problems. Herein, we describe the synthesis of a p-n heterostructured photocatalyst, consisting of ZnO nanorod arrays (NRAs) decorated with BiOI nanoplates (NPs), by a facile solvothermal method. The product thus obtained shows high photoelectrochemical water splitting performance and enhanced photoelectrocatalytic activity for pollutant degradation under visible light irradiation. The p-type BiOI NPs, with a narrow band gap, not only act as a sensitizer to absorb visible light and promote electron transfer to the n-type ZnO NRAs, but also increase the contact area with organic pollutants. Meanwhile, ZnO NRAs provide a fast electron-transfer channel, thus resulting in efficient separation of photoinduced electron-hole pairs. Such a p-n heterojunction nanocomposite could serve as a novel and promising catalyst in energy and environmental applications.

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