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ZnO thin films,surface embedded with biologically derived Ag/Au nanoparticles,for efficient photoelectrochemical splitting of water
Authors:Babita Kumari  Shailja Sharma  Nirupama Singh  Anuradha Verma  Vibha R Satsangi  Sahab Dass  Rohit Shrivastav
Affiliation:1. Department of Chemistry, Dayalbagh Educational Institute, Dayalbagh, Agra 282 005, India;2. Department of Physics & Computer Science, Dayalbagh Educational Institute, Dayalbagh, Agra 282 005, India
Abstract:ZnO thin films, showing nano-ridges at the surface and the top layer embedded with metal (Ag/Au) nanoparticles (MNP), were obtained by sol-gel synthesis, using zinc acetate dihydrate (CH3.COO)2Zn.2H2O] as precursor. The method involved prior synthesis of Ag and Au nanoparticles via biological reduction of AgNO3 and HAuCl4, respectively, using algae Spirulina platensis. The XRD analysis indicated dominant evolution of wurtzite ZnO phase. Low-angle shift in peaks, seen with nanoparticles embedded films, indicated partial diffusion of metals into ZnO lattice. Band gap energy was least affected and lied in the expected range. AFM and SEM analysis revealed the surface topography and morphology, while EDX analysis confirmed the elemental stoichiometry and existence of Ag/Au nanoparticles in samples. Significant gain in photoelectrochemical current using MNP embedded films is largely accountable to the improvement in electrical conductance and the role played by metal nanoparticles in charge-carrier separation, collection and transport.
Keywords:Photoelectrochemical  Water splitting  Hydrogen  Nanostructures  Zinc oxide  Metal nanoparticles
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