Publication | Closed Access
Double-Shelled CdS- and CdSe-Cosensitized ZnO Porous Nanotube Arrays for Superior Photoelectrocatalytic Applications
184
Citations
38
References
2015
Year
Materials ScienceChemical EngineeringPhotoinduced Electron-hole PairsEngineeringPhotochemistryNanomaterialsNanotechnologyEffective SeparationInorganic PhotochemistryDouble-shelled Cds-PhotocatalysisNanoheterogeneous CatalysisPhoto-electrochemical CellChemistryZno Nanorod ArraysWater SplittingPhotoelectrochemistrySuperior Photoelectrocatalytic Applications
The effective separation and transport of photoinduced electron-hole pairs in photoanodes is of great significance to photoelectrochemical and catalytic performance. Here, a facile and effective two-step strategy is developed to fabricate double-shelled ZnO/CdS/CdSe porous nanotube photoanodes from ZnO nanorod arrays (NRAs). Surprisingly, after the process of the deposition of CdS and CdSe, the ZnO nanorod arrays are partially dissolved, resulting in the formation of ZnO/CdS/CdSe porous nanotube arrays (NTAs). By virtue of their unique porous nanotube structure and cosensitization effect, the ZnO/CdS/CdSe porous NTAs show superior photoelectrochemical water-splitting performance and organic-pollutant-degradation ability under visible light irradiation, as well as excellent long-term photostability.
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