4.8 Article

Cubic In2O3 Microparticles for Efficient Photoelectrochemical Oxygen Evolution

Journal

JOURNAL OF PHYSICAL CHEMISTRY LETTERS
Volume 5, Issue 24, Pages 4298-4304

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/jz502316h

Keywords

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Funding

  1. National Basic Research Programs of China [2011CB922102, 2013CB932901]
  2. National Natural Science Foundation [11404162, 11374141]
  3. PAPD
  4. Research Innovation Program for College Graduates of Jiangsu Province [KYLX-0027]
  5. City University of Hong Kong Applied Research Grant (ARG) [9667085]

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Cubic In2O3 microparticles with exposed {001} facets as well as single morphology and size are produced on a large scale on silicon with a high yield. The morphological evolution during chemical vapor deposition is investigated and the new knowledge enables precise facet cutting. The synthesized Cubic In2O3 microparticles possess superior photoelectrocatalytic activity and excellent chemical and structural stability in oxygen evolution reaction on account of the unique surface structure and electronic band structure of the {001} facets. Our results reveal that it is feasible to promote the photolectrochemical water splitting efficiency of photoanode materials by controlling the growth on specific crystal facets. The technique and concept can be extended to other facet-specific materials in applications such as sensors, solar cells, and lithium batteries.

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