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铌酸锡光催化剂的导向电荷动力学:相结构和电子结构的关键作用

Steering Charge Kinetics of Tin Niobate Photocatalysts: Key Roles of Phase Structure and Electronic Structure.

作者信息

Huang Shushu, Wang Chunyan, Sun Hao, Wang Xiaojing, Su Yiguo

机构信息

College of Chemistry and Chemical Engineering, Inner Mongolia University, Hohhot, 010021, Inner Mongolia, People's Republic of China.

出版信息

Nanoscale Res Lett. 2018 May 23;13(1):161. doi: 10.1186/s11671-018-2578-2.

Abstract

Tin niobate photocatalysts with the phase structures of froodite (SnNbO) and pyrochlore (SnNbO) were obtained by a facile solvothermal method in order to explore the impact of phase structure and electronic structure on the charge kinetics and photocatalytic performance. By employing tin niobate as a model compound, the effects of phase structure over electronic structure, photocatalytic activity toward methyl orange solution and hydrogen evolution were systematically investigated. It is found that the variation of phase structure from SnNbO to SnNbO accompanied with modulation of particle size and band edge potentials that has great consequences on photocatalytic performance. In combination with the electrochemical impedance spectroscopy (EIS), transient photocurrent responses, transient absorption spectroscopy (TAS), and the analysis of the charge-carrier dynamics suggested that variation of electronic structure has great impacts on the charge separation and transfer rate of tin niobate photocatalysts and the subsequent photocatalytic performance. Moreover, the results of the X-ray photoelectron spectroscopy (XPS) indicated that the existent of Sn species in SnNbO could result in a decrease in photocatalytic activity. Photocatalytic test demonstrated that the SnNbO (froodite) catalyst possesses a higher photocatalytic activity toward MO degradation and H evolution compared with the sample of SnNbO (pyrochlore). On the basis of spin resonance measurement and trapping experiment, it is expected that photogenerated holes, O, and OH active species dominate the photodegradation of methyl orange.

摘要

通过简便的溶剂热法制备了具有钙钛矿(SnNbO)和烧绿石(SnNbO)相结构的铌酸锡光催化剂,以探究相结构和电子结构对电荷动力学及光催化性能的影响。以铌酸锡作为模型化合物,系统研究了相结构对电子结构、对甲基橙溶液的光催化活性及析氢性能的影响。研究发现,从SnNbO到SnNbO的相结构变化伴随着粒径和能带边缘电位的调制,这对光催化性能有重大影响。结合电化学阻抗谱(EIS)、瞬态光电流响应、瞬态吸收光谱(TAS)以及电荷载流子动力学分析表明,电子结构的变化对铌酸锡光催化剂的电荷分离和转移速率以及随后的光催化性能有很大影响。此外,X射线光电子能谱(XPS)结果表明,SnNbO中Sn物种的存在会导致光催化活性降低。光催化测试表明,与SnNbO(烧绿石)样品相比,SnNbO(钙钛矿)催化剂对MO降解和析氢具有更高的光催化活性。基于自旋共振测量和捕获实验,预计光生空穴、O和OH活性物种主导甲基橙的光降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a8b6/5966348/5b337b65fd43/11671_2018_2578_Fig1_HTML.jpg

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