Effect of Surface Coating on the Photocatalytic Function of Hybrid CdS-Au Nanorods

被引:136
作者
Ben-Shahar, Yuval [1 ,2 ]
Scotognella, Francesco [3 ]
Waiskopf, Nir [1 ,2 ]
Kriegel, Ilka [3 ]
Dal Conte, Stefano [3 ]
Cerullo, Giulio [3 ]
Banin, Uri [1 ,2 ]
机构
[1] Hebrew Univ Jerusalem, Inst Chem, IL-91904 Jerusalem, Israel
[2] Hebrew Univ Jerusalem, Ctr Nanosci & Nanotechnol, IL-91904 Jerusalem, Israel
[3] Politecn Milan, Dipartimento Fis, IFN CNR, I-20133 Milan, Italy
基金
欧洲研究理事会;
关键词
hybrid nanoparticles; hydrogen evolution; photocatalysis; surface coatings; charge transfer dynamics; SEMICONDUCTOR NANOCRYSTALS; HYDROGEN-GENERATION; CHARGE SEPARATION; RECENT PROGRESS; SEEDED GROWTH; NANOSTRUCTURES; ULTRAFAST; REDUCTION; DYNAMICS; SIZE;
D O I
10.1002/smll.201402262
中图分类号
O6 [化学];
学科分类号
070301 [无机化学];
摘要
Hybrid semiconductor-metal nanoparticles are interesting materials for use as photocatalysts due to their tunable properties and chemical processibility. Their function in the evolution of hydrogen in photocatalytic water splitting is the subject of intense current investigation. Here, the effects of the surface coatings on the photocatalytic function are studied, with Au-tipped CdS nanorods as a model hybrid nanoparticle system. Kinetic measurements of the hydrogen evolution rate following photocatalytic water reduction are performed on similar nanoparticles but with different surface coatings, including various types of thiolated alkyl ligands and different polymer coatings. The apparent hydrogen evolution quantum yields are found to strongly depend on the surface coating. The lowest yields are observed for thiolated alkyl ligands. Intermediate values are obtained with L-glutathione and poly(styrene-co-maleic anhydride) polymer coatings. The highest efficiency is obtained for polyethylenimine (PEI) polymer coating. These pronounced differences in the photocatalytic efficiencies are correlated with ultrafast transient absorption spectroscopy measurements, which show a faster bleach recovery for the PEI-coated hybrid nanoparticles, consistent with faster and more efficient charge separation. These differences are primarily attributed to the effects of surface passivation by the different coatings affecting the surface trapping of charge carriers that compete with effective charge separation required for the photocatalysis. Further support of this assignment is provided from steady-state emission and time-resolved spectral measurements, performed on related strongly fluorescing CdSe/CdS nanorods. The control and understanding of the effect of the surface coating of the hybrid nanosystems on the photocatalytic processes is of importance for the potential application of hybrid nanoparticles as photocatalysts.
引用
收藏
页码:462 / 471
页数:10
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