期刊
ROYAL SOCIETY OPEN SCIENCE
卷 5, 期 2, 页码 -出版社
ROYAL SOC
DOI: 10.1098/rsos.171376
关键词
LaCoO3; orientation; photocatalysis; epitaxial film; strain
资金
- National Natural Science Foundation of China [51502249]
- Scientific Research Fund of Education Department of Sichuan Province [16ZA0133]
- Scientific and Technological Innovation Team Foundation of Southwest University of Science and Technology, China [17LZXT11]
LaCoO3 epitaxial films were grown on (100), (110) and (111) oriented LaAlO3 substrates by the polymer-assisted deposition method. Crystal structure measurement and cross-section observation indicate that all the LaCoO3 films are epitaxially grown in accordance with the orientation of LaAlO3 substrates, with biaxial compressive strain in the ab plane. Owing to the different strain directions of CoO6 octahedron, the mean CoO bond length increases by different amounts in (100), (110) and (111) oriented films compared with that of bulk LaCoO3, and the (100) oriented LaCoO3 has the largest increase. Photocatalytic degradation of methyl orange indicates that the order of photocatalytic activity of the three oriented films is (100)>(111)>(110). Combined with analysis of electronic nature and band structure for LaCoO3 films, it is found that the change of the photocatalytic activity is closely related to the crystal field splitting energy of Co3+ and Co-O binding energy. The increase in the mean Co-O bond length will decrease the crystal field splitting energy of Co3+ and Co-O binding energy and further reduce the value of band gap energy, thus improving the photocatalytic activity. This may also provide a clue for expanding the visible-light-induced photocatalytic application of LaCoO3.
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