Three-dimensional plasmonic photoanodes based on Au-embedded TiO(2) structures for enhanced visible-light water splitting.
Three-dimensional plasmonic photoanodes based on Au-embedded TiO(2) structures for enhanced visible-light water splitting.
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DOI:
10.1021/am404738a
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发表时间:
2014-01
影响因子:
9.5
通讯作者:
Zhaoyao Zhan;Jianing An;Huanchao Zhang;R. Hansen;Lianxi Zheng
中科院分区:
文献类型:
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作者:
Zhaoyao Zhan;Jianing An;Huanchao Zhang;R. Hansen;Lianxi Zheng
Plasmon-assisted visible light photocatalysis presents a possible solution for direct solar-to-fuel production. Here we investigate the plasmon-enhanced photocatalytic water splitting using different TiO2/Au electrode structures. Experimental data demonstrates that the Au embedded in TiO2 (Au-in-TiO2) electrode greatly outperforms the Au sitting on TiO2 (Au-on-TiO2) electrode. Numerical simulation shows that the local electric field is very intense in the semiconductor near Au nanoparticles, which causes the enhancement of electron-hole pair generation. A 3D Au-embedded TiO2 structure is thus proposed to further improve the light absorption and photocatalytic performance.