Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/7504
Title: Effects of Au loading on the enhancement of photoelectrochemical activities of the Au@ZnO nano-heteroarchitecture
Authors: Chikate, Parameshwar R.
Devan, Rupesh S.
Keywords: Electrochemistry;Gold nanoparticles;Hot electrons;II-VI semiconductors;Nanoparticles;Nanowires;Physicochemical properties;Synthesis (chemical);Zinc oxide;Zinc sulfide;Au nanoparticle;Controlled reactions;Cubic crystalline;Hexagonal wurtzite;Hydrothermal methods;Photocurrent density;Photoelectrochemical performance;Photoelectrochemicals;Gold;gold nanoparticle;nanowire;zinc oxide nanoparticle;Article;current density;electrochemistry;electron;field emission scanning electron microscopy;particle size;photochemistry;physical chemistry;priority journal;reaction duration (chemistry);stoichiometry;surface property;transmission electron microscopy;X ray diffraction;X ray photoemission spectroscopy
Issue Date: 2020
Publisher: Royal Society of Chemistry
Citation: Chikate, P. R., Daware, K. D., Patil, S. S., Didwal, P. N., Lole, G. S., Choudhary, R. J., . . . Devan, R. S. (2020). Effects of au loading on the enhancement of photoelectrochemical activities of the Au@ZnO nano-heteroarchitecture. New Journal of Chemistry, 44(14), 5535-5544. doi:10.1039/d0nj00004c
Abstract: Heterostructures have delivered phenomenal photoelectrochemical performance owing to their excellent physicochemical properties. We report on the utilization of controlled Au@ZnO nano-heteroarchitectures for efficient water splitting. The ZnO nanowires of an average length and a diameter of ∼5-6 μm and 120 nm, respectively, synthesized by the hydrothermal method were subjected to the controlled decoration of Au nanoparticles of diameter ∼20 nm. The cubic crystalline Au nanoparticles were decorated on the hexagonal wurtzite ZnO nanowires under a controlled reaction time. A 12 h reaction time has resulted in the uniform decoration of Au nanoparticles along the surface of ZnO nanowires, and a further increase in the reaction time ensured their agglomeration in the array of ZnO nanowires. XPS analysis revealed the existence of pure metallic Au on ZnO nanowires without altering the stoichiometry. The Au@ZnO nano-heteroarchitecture with a 12 h reaction time delivered a maximum photocurrent density of 1.04 A cm-2, which is a 52-fold increase than that of pristine ZnO nanowires. The ABPE value is 0.59%, which is approximately five-fold higher than that of the pristine ZnO nanowires. This reveals that the controlled decoration of Au nanoparticles along the surface of ZnO nanowires has altered the Fermi energy position significantly and facilitated the injection of hot electrons from the SP state into the conduction band of ZnO, effectively. © 2020 The Royal Society of Chemistry and the Centre National de la Recherche Scientifique.
URI: https://doi.org/10.1039/d0nj00004c
https://dspace.iiti.ac.in/handle/123456789/7504
ISSN: 1144-0546
Type of Material: Journal Article
Appears in Collections:Department of Metallurgical Engineering and Materials Sciences

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