Heterojunctions between amorphous and crystalline niobium oxide with enhanced photoactivity for selective aerobic oxidation of benzylamine to imine under visible light
Data(s) |
21/09/2015
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Resumo |
The formation of heterojunctions between two crystals with different band gap structures, acting as a tunnel for the unidirectional transfer of photo-generated charges, is an efficient strategy to enhance photocatalytic performance in semiconductor photocatalysts. The heterojunctions may also promote the photoactivity in the visible-light-response of any surface complex catalysts by influencing the transfer of photo-generated electrons. Herein, Nb2O5 microfibers, with a high surface area of interfaces between an amorphous phase and crystalline phase, were designed and synthesised by the calcination of hydrogen-form niobate while controlling the crystallization The photoactivity of these microfibers towards selective aerobic oxidation reactions was investigated. As predicted, the Nb2O5 microfibres containing heterojunctions exhibited the highest photoactivity. This could be due to the band gap difference between the amorphous phase and the crystalline phase, which shortened the charge mobile distance and improved the efficiency. |
Identificador | |
Publicador |
RSC Publications |
Relação |
DOI:10.1039/C5TA03214H Zhang, Yantao, Pei, Linjuan, Zheng, Zhanfeng, Yuan, Yong, Xie, Tengfeng, Yang, Juan, Chen, Shuai, Wang, Junwen, Waclawik, Eric R., & Zhu, Huaiyong (2015) Heterojunctions between amorphous and crystalline niobium oxide with enhanced photoactivity for selective aerobic oxidation of benzylamine to imine under visible light. Journal of Materials Chemistry A, 3(35), pp. 18045-18052. |
Direitos |
Copyright 2015 The Royal Society of Chemistry |
Fonte |
School of Chemistry, Physics & Mechanical Engineering; School of Clinical Sciences; Institute for Future Environments; Science & Engineering Faculty |
Palavras-Chave | #030601 Catalysis and Mechanisms of Reactions #030603 Colloid and Surface Chemistry #030699 Physical Chemistry not elsewhere classified #Nb2O5 heterojunctions #niobium oxide #photocatalysis #aerobic oxidation |
Tipo |
Journal Article |