Effect of surfactant on the physical properties of ZnO nanorods and the performance of ZnO photoelectrochemical cell

Ammonia; Electrochemical cells; II-VI semiconductors; Morphology; Nanorods; Nanostructures; Open circuit voltage; Optical properties; Oxide minerals; Particle size; Photoelectrochemical cells; Surface active agents; Thin films; Tin oxides; Zinc oxide; Cetyltrimethylammonium bromide; Controlled hydro...

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Bibliographic Details
Main Authors: Rahman M.Y.A., Umar A.A., Taslim R., Salleh M.M.
Other Authors: 55347217400
Format: Article
Published: Taylor and Francis Ltd. 2023
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Summary:Ammonia; Electrochemical cells; II-VI semiconductors; Morphology; Nanorods; Nanostructures; Open circuit voltage; Optical properties; Oxide minerals; Particle size; Photoelectrochemical cells; Surface active agents; Thin films; Tin oxides; Zinc oxide; Cetyltrimethylammonium bromide; Controlled hydrolysis; Fill factor; Fluorine tin oxides; Growth process; Photovoltaic materials; Photovoltaic parameters; Polyvinyl pyrrolidone; Optical films; ammonia; cetrimide; methenamine; povidone; zinc oxide; zinc oxide nanoparticle; Article; cells; electric potential; field emission scanning electron microscopy; hydrolysis; optics; particle size; photoelectrochemical cell; priority journal; short circuit current; X ray diffraction