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s-p orbital hybridization: a strategy for developing efficient photocatalysts with high carrier mobility 被引量:3

s-p orbital hybridization: a strategy for developing efficient photocatalysts with high carrier mobility
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摘要 Photocatalysis has not only invigorated the field of energy conversion materials,but also is leading to bright prospects for application in the environmental purification field[1].Akira Fujishima and Kenichi Honda[2]first reported photocatalytic water splitting on a Ti O2semiconductor electrode under ultraviolet(UV)light in1972.In semiconductor photocatalysts,electrons are excited from valence band maximum(VBM)to conduction band Photocatalysis has not only invigorated the field of energy con- version materials, but also is leading to bright prospects for appli- cation in the environmental purification field . Akira Fujishima and Kenichi Honda first reported photocatalytic water splitting on a TiO2 semiconductor electrode under ultraviolet (UV) light in 1972. In semiconductor photocatalysts, electrons are excited from valence band maximum (VBM) to conduction band minimum (CBM) under light irradiation, and then trigger the photocatalytic process .
出处 《Science Bulletin》 SCIE EI CAS CSCD 2018年第8期465-468,共4页 科学通报(英文版)
基金 financially supported by the National Natural Science Foundation of China(51672018,51472016 and51272015) Fundamental Research Fund for Centre University the Australian Research Council Discovery Project(DP170101467) University of Wollongong AIIM for Gold Grant 2018
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