Influence of complexing agent, pH of solution and thickness on morphological and optical properties of ZnS particles layer prepared by electrochemical deposition technique
Nanosistemy: fizika, himiâ, matematika, Tome 11 (2020) no. 5, pp. 519-528.

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Zinc sulfide particles layer were grown on FTO glass and stainless steel substrates by electrode position technique from aqueous solution that contained 0.1 N zinc sulfate, 0.1 N sodium thiosulfate and 0.1 N triethanolamine was used as complexing agent. The deposing potential was analyzed by cyclic voltammetry technique. The ZnS particle growth was studied in the range of deposition time from 10 to 40 minutes. The thickness of layer was found to be the highest, 3.92 $\mu$ m, at 20 min. The various percentage of complexing agent, pH of solution and thicknesses of film were characterized by scanning electron microscope (SEM) and UV-Visible spectrophotometer. The effects of complexing agent, pH of solution and thickness of layer on morphological and optical properties of ZnS were investigated. The Electrical resistivity of ZnS was found thickness dependent. The Chemical Composition of ZnS particles analysed by EDAX (Energy Dispersive Analysis by X-ray).
Keywords: complexing agent, electrodeposition, pH of bath, resistivity, thickness of ZnS particles layer.
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     author = {Jitendra Borse and Arun Garde},
     title = {Influence of complexing agent, {pH} of solution and thickness on morphological and optical properties of {ZnS} particles layer prepared by electrochemical deposition technique},
     journal = {Nanosistemy: fizika, himi\^a, matematika},
     pages = {519--528},
     publisher = {mathdoc},
     volume = {11},
     number = {5},
     year = {2020},
     language = {en},
     url = {http://geodesic.mathdoc.fr/item/NANO_2020_11_5_a3/}
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Jitendra Borse; Arun Garde. Influence of complexing agent, pH of solution and thickness on morphological and optical properties of ZnS particles layer prepared by electrochemical deposition technique. Nanosistemy: fizika, himiâ, matematika, Tome 11 (2020) no. 5, pp. 519-528. http://geodesic.mathdoc.fr/item/NANO_2020_11_5_a3/