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作者:

Sang, L. X. (Sang, L. X..) (学者:桑丽霞) | Zhang, Z. Y. (Zhang, Z. Y..) | Ma, C. F. (Ma, C. F..)

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EI Scopus SCIE

摘要:

TiO2 nanotube arrays were fabricated by sonoelectrochemical anodic oxidation and calcined in nitrogen, air, or 5% hydrogen/nitrogen which was denoted as TNT-A, TNT-N, and TNT-H, respectively. All annealed TiO2 nanotube arrays samples exhibited similar surface morphology. With UV illumination (365 +/- 15 nm), the photocurrent density of the TNT-A, TNT-N and TNT-H was about 0.27 mA/cm(2), 0.45 mA/cm(2) and 0.60 mA/cm(2), respectively. The trapped electron at the Ti4+ center of TiO2 nanotube arrays shows absorption at around 500-700 nm. From the XPS measurement, it was found that annealing in 5% hydrogen/nitrogen helped the sample obtain a greater defect density. Because of the reduction of Ti4+ and the formation of oxygen vacancies, the charge transfer resistance appeared in this order: TNT-A > TNT-N > TNT-H. Thus TNT-H harvested the greatest charge carrier density of 9.86 x 10(20) cm(-3), TNT-N and TNT-A obtained a charge carrier density of 1.38 x 10(20) cm(-3) and 1.06 x 10(20) cm(-3), respectively. Accordingly, the hydrogen production rate by water splitting over TNT-A, TNT-N and TNT-H (320-780 nm irradiation, 3 h) was about 120 mu L/h cm(2), 159 mu L/h cm(2) and 231 mu L/h cm(2), respectively. Copyright (C) 2011, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

关键词:

Charge carrier Charge transfer Defect density Hydrogen production TiO2 nanotube arrays

作者机构:

  • [ 1 ] [Sang, L. X.]Beijing Univ Technol, Coll Environm & Energy Engn, Minist Educ, Key Lab Enhanced Heat Transfer & Energy Conservat, Beijing 100124, Peoples R China
  • [ 2 ] [Sang, L. X.]Beijing Univ Technol, Coll Environm & Energy Engn, Key Lab Heat Transfer & Energy Convers, Beijing 100124, Peoples R China

通讯作者信息:

  • 桑丽霞

    [Sang, L. X.]Beijing Univ Technol, Coll Environm & Energy Engn, Minist Educ, Key Lab Enhanced Heat Transfer & Energy Conservat, Beijing 100124, Peoples R China

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来源 :

INTERNATIONAL JOURNAL OF HYDROGEN ENERGY

ISSN: 0360-3199

年份: 2011

期: 8

卷: 36

页码: 4732-4738

7 . 2 0 0

JCR@2022

ESI学科: ENGINEERING;

ESI高被引阀值:155

JCR分区:1

中科院分区:1

被引次数:

WoS核心集被引频次: 57

SCOPUS被引频次: 58

ESI高被引论文在榜: 0 展开所有

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