Light energy conversion device for photocatalyst 2.0%WO3-TiO2 with oxygen vacancies for water splitting

被引:0
作者
Hai-xia Tong
Qi-yuan Chen
Hui-ping Hu
Zhou-lan Yin
机构
[1] Changsha University of Science and Technology,Institute of Chemical and Biologic Engineering
[2] Central South University,School of Chemistry and Chemical Engineering
来源
Journal of Central South University of Technology | 2010年 / 17卷
关键词
light energy conversion device; photocatalytic activity; O; evolution; oxygen vacancy; photo splitting water;
D O I
暂无
中图分类号
学科分类号
摘要
Using carbon felt, polytetrafluoroethylene latex and powder catalyst to assembly a light energy conversion device, the photocatalytic activity of catalyst 2.0%WO3-TiO2 (2%WO3 compounding TiO2) with oxygen vacancies was studied through the water splitting for O2 evolution, using a high pressure mercury lamp as the light source and Fe3+ as the electron acceptor in two different devices: an ordinary photolysis device with catalyst powder suspending through a magnetic stirrer and a self-assembly light energy conversion device. The results show that after 12 h irradiation, the photocatalytic activity of 2.0%WO3-TiO2 with oxygen vacancies in the self-assembly light energy conversion device is higher than that of the ordinary photolysis device, and the amount of oxygen evolution is about 12 and 9 mmol/L respectively in these two devices. After 12 h, the rates of O2 evolution are slow in each device and the photocatalyst almost loses the photoactivity in the ordinary photolysis device. So, compared with the ordinary photocatalytic device, the rate of oxygen evolution and the life time of the catalyst are improved in the self-assembly light energy conversion device.
引用
收藏
页码:943 / 946
页数:3
相关论文
共 55 条
[1]  
Zong X.(2008)Enhancement of photocatalytic H J Am Chem Soc 130 7176-7180
[2]  
Yan H. J.(2009) evolution on CdS by loading MoS J Rare Earths 27 811-814
[3]  
Wu G. P.(2001) as cocatalyst under visible light irradiation [J] Applied Catalysis A: General 205 117-128
[4]  
Ma G. J.(2000)Synthesis of visible light responsive ultrafine K Journal of Molecular Catalysis A: Chemical 161 105-113
[5]  
Wen F. Y.(2003)Ce Chemical Physics Letters 371 360-364
[6]  
Wang L.(2003)Nb Journal of Photochemistry and Photobiology A: Chemistry 158 145-162
[7]  
Li C.(2001)O Materials Research Bulletin 36 1185-1193
[8]  
Chen H.-q.(2001) by a stearic acid method [J] Molecular Catalysis 15 72-79
[9]  
Zhu J.-w.(2007)The photocatalytic oxidation of water to O Catal Today 120 133-138
[10]  
Ma J.-x.(2008) over pure CeO Catal Today 132 159-164