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Fabrication, Characterization and Optical Properties of TiO2 Nanotube Arrays on Boron-doped Diamond Film Through Liquid Phase Deposition

Fabrication, Characterization and Optical Properties of TiO2 Nanotube Arrays on Boron-doped Diamond Film Through Liquid Phase Deposition

作     者:YUAN Jujun LI Hongdong WANG Qiliang CHENG Shaoheng ZHANG Xianke YU Huajun ZHU Xiurong XIE Yingmao 

作者机构:College of Physics and Electronics Gannan Normal University Ganzhou 341000 P. R. China State Key Laboratory of Superhard Materials Jilin University Changehun 130012 P. R. China Institute of Optoelectronie Materials and Technology Gannan Normal University Ganzhou 341000 P. R. China 

出 版 物:《Chemical Research in Chinese Universities》 (高等学校化学研究(英文版))

年 卷 期:2014年第30卷第1期

页      面:18-22页

核心收录:

学科分类:080903[工学-微电子学与固体电子学] 0809[工学-电子科学与技术(可授工学、理学学位)] 07[理学] 070205[理学-凝聚态物理] 08[工学] 080501[工学-材料物理与化学] 0805[工学-材料科学与工程(可授工学、理学学位)] 080502[工学-材料学] 0702[理学-物理学] 

基  金:Supported by the National Natural Science Foundation of China(Nos.51072066  11247305)  the PhD Programs Foundation of Ministry of Education of China(No.20100061110083)  the Open Project of State Key Laboratory of Superhard Materials(Jilin University)  China(No.201213) and the Youth Fund of Science and Technology Department of Jiangxi Province  China (No.20131522040044) 

主  题:TiO2 nanotube array Boron doped diamond Lquid phase deposition Optical property 

摘      要:TiO2 nanotube(TiNT) arrays were deposited on boron-doped diamond films by a liquid-phase deposition method with ZnO nanorod arrays as the *** different morphologies of TiNTs have been obtained by controlling the morphology of ZnO *** X-ray diffraction and energy-dispersive X-ray analysis show that the ZnO nanorod array template has been removed in the TiNTs formation *** crystalline quality of the TiNTs is improved by increasing the annealing *** band gap of the TiNTs is about 3.25 eV estimated by the UV-Vis absorption spectroscopy,which is close to the value of bulk *** the photoluminescence spectrum,a broad visible emission in a range of ca.550-750 nm appears due to the surface oxygen vacancies and defects.

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