Heterojunction Fe2O3-SnO2 Nanostructured Photoanode for Efficient Photoelectrochemical Water Splitting

被引:0
|
作者
Hyun Soo Han
Sun Shin
Jun Hong Noh
In Sun Cho
Kug Sun Hong
机构
[1] Seoul National University,Research Institute of Advanced Materials
[2] Seoul National University,WCU Hybrid Materials Program, Department of Materials Science and Engineering, College of Engineering
[3] Korea Research Institute of Chemical Technology,Division of Advanced Materials
[4] Stanford University,Department of Mechanical Engineering
[5] Ajou University,Department of Materials Science and Engineering
来源
JOM | 2014年 / 66卷
关键词
SnO2; Hematite; Water Splitting; BiVO4; Photocurrent Density;
D O I
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中图分类号
学科分类号
摘要
Hierarchically organized nanostructures were fabricated by growing SnO2 nanoparticles on a fluorine-doped tin oxide/glass substrate via a laser ablation method. Cauliflower-like clusters consisting of agglomerated nanoparticles were deposited and aligned with respect to the substrate with a large internal surface area and open channels of pores. The morphological changes of SnO2 nanostructured films were investigated as a function of the oxygen working pressure in the range of 100–500 mTorr. A nanostructured scaffold prepared at an oxygen working pressure of 100 mTorr exhibited the best photoelectrochemical (PEC) performance. A Ti:Fe2O3-SnO2 nanostructured photoanode showed the photocurrent that was 34% larger than that of a Ti:Fe2O3 flat photoanode when the amount of Ti:Fe2O3 sensitizer was identical for the two photoanodes. The larger surface area and longer electron lifetime of the Ti:Fe2O3-SnO2 nanostructured photoanode explains its improved PEC performance.
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页码:664 / 669
页数:5
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