3.8 Proceedings Paper

Electrodeposition of CdTe Thin Film from Acetate-Based Ionic Liquid Bath

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AMER INST PHYSICS
DOI: 10.1063/1.5035250

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CdTe being a direct band gap semiconductor, is mostly used in photovoltaics. Here we present, the synthesis of CdTe thin film on fluorine doped tin oxide (FTO) substrate potentiostatically using 1-butyl-3-methylimidazolium acetate ([Bmim][Ac]) ionic liquid (IL) bath at 90 degrees C. Major advantages of using electrodeposition involves process simplicity, large scalability & economic viability. Some of the benefits offered by IL electrolytic bath are low vapour pressure, wide electrochemical window, and good ionic mobility. Cd(CH3COO)(2) (anhydrous) and TeO2 were used as the source precursors. The IL electrolytic bath temperature was kept at 90 degrees C for deposition, owing to the limited solubility of TeO2 in [Bmim][Ac] IL at room temperature. Cathodic electrodeposition was carried out using a three electrode cell setup at a constant potential of -1.20 V vs. platinum (Pt) wire. The CdTe/FTO thin film were annealed in argon (Ar) atmosphere. Optical study of nanostructured CdTe film were done using UV-Vis-IR and Raman spectroscopy. Raman analysis confirms the formation of CdTe having surface optics (SO) mode at 160.6 cm(-1) and transverse optics (TO) mode at 140.5 cm(-1). Elemental Te peaks at 123, 140.5 and 268 cm(-1) were also observed. The optical band gap of Ar annealed CdTe thin film were found to be 1.47 eV (absorbance band edge similar to 846 nm). The optimization of deposition parameters using acetate-based IL electrolytic bath to get nearly stoichiometric CdTe thin film is currently being explored.

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