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TiO2包覆不同微结构纳米碳纤维薄膜电极的光电化学性能

李志州1,2, 崔晓莉2, 郑俊生3, 王庆飞1   

    1. 河北师范大学化学与材料科学学院, 石家庄 050016;
    2. 复旦大学材料科学系, 上海 200433;
    3. 华东理工大学化学工程联合国家重点实验室, 上海 200237
  • 收稿日期:2007-11-09 修回日期:1900-01-01 出版日期:2008-06-10 发布日期:2008-06-10
  • 通讯作者: 崔晓莉

Photoelectrochemical Properties of TiO2 Coated on Carbon Nanofibers with Different Microstructure Film Electrodes

LI Zhi-Zhou1,2, CUI Xiao-Li2* , ZHENG Jun-Sheng3, WANG Qing-Fei1   

    1. College of Chemistry and Materials Science, Hebei Normal University, Shijiazhuang 050016, China;
    2. Department of Materials Science, Fudan University, Shanghai 200433, China;
    3. State Key Laboratory of Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China
  • Received:2007-11-09 Revised:1900-01-01 Online:2008-06-10 Published:2008-06-10
  • Contact: CUI Xiao-Li

摘要: 采用溶胶-凝胶法制备了TiO2包覆不同微结构的纳米碳纤维(Carbon nanofibers, CNF), 包括板式纳米碳纤维(Platelet-CNF, PCNF)和鱼骨式纳米碳纤维(Fish-bone-CNF, FCNF)的复合薄膜电极. 用光电流作用谱和光电流-电势图等方法研究了复合薄膜电极的光电化学性能. 研究结果表明, 复合薄膜电极表现出n型半导体特征, 薄膜中CNF的存在有助于光生电子和空穴有效地分离, 提高了光电转换效率, TiO2包覆PCNF薄膜电极在可见光范围内存在明显的光电响应.

关键词: TiO2复合薄膜电极, 纳米碳纤维, 光电化学, 光电转换效率(IPCE)

Abstract: Novel nanocomposites of TiO2 and two kinds' carbon nanofibers with different microstructure were prepared by sol-gel method. The nanocomposites were studied via SEM, XRD, and photoelectrochemistry. The potential dependence of photocurrent and the photocurrent transients indicate that the nanocomposite shows characteristics of n-type semiconductor. The experimental results demonstrate that the PCNF/TiO2 shows a higher photoelectrochemical response and sensitivity for visible light illumination than FCNF/TiO2 and pristine TiO2. This is likely because of the specific microstructure of the PCNF, which possesses large numbers of active edge sites and provides many favorable sites for electron transfer as well as a very large working surface area. The significant enhancement of the photoelectrochemical response of the CNF toward visible light responses may result from the difference of their morphologies as well as their textural properties and crystalline structure. The results show that PCNF and FCNF are thus very promising candidates for developing a class of ideal and novel modified photoelectrodes.

Key words: TiO2 nanocomposite electrodes, Carbon nanofibers, Photoelectrochemistry, IPCE

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