4.7 Article

Bi4TaO8Cl Nano-Photocatalyst: Influence of Local, Average, and Band Structure

Journal

INORGANIC CHEMISTRY
Volume 56, Issue 10, Pages 5525-5536

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.6b01970

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Funding

  1. UGC, Govt. of India
  2. DST, India
  3. Division of Scientific User Facilities, Office of Basic Energy Sciences, U.S. Department of Energy [DE-AC05-00OR22725]
  4. University of Petroleum and Energy Studies (UPES)

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The average structure, local structure, and band structure of nanoparticles of photocatalyst Bi4TaO(8)Cl, an AurivilliusSillen layered material, has been studied by powder neutron Rietveld refinement, neutron pair distribution function technique, Raman scattering, and density functional theory calculations. A significant local structural deviation of nano-Bi4TaO(8)Cl was established in contrast to the local structure of bulk-Bi4TaO(8)Cl. Local structure was further supported by Raman scattering measurements. Through DFT calculations, we identify specific features in the electronic band structure that correlate lower secondary structural distortions in nano-Bi4TaO(8)Cl. Increased distortion of TaO6, decreased Ta-O-Ta bond angle, and increased octahedral tilt in the local structure of nano-Bi4TaO(8)Cl influence the band structure and the electron hole pair migration. Therefore, in addition to morphology and size, the local structure of a nanomaterial contributes to the photocatalytic performance. Trapping experiments confirm the role of superoxide radical in the photocatalysis mechanism of this material. Such studies help in developing new functional materials with better photocatalytic efficiency to address energy and environmental issues.

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