Original Research
Various Cu+, Mg2+ and S2- ionic concentration effects on a novel Cu2ZnMgS4 quaternary compound synthesis for various scientific applications
K. Sudh
a
R. Sasirek
a
T. Chitravel
T. P. Kumar

aDepartment of Physics, Anna University Regional Campus Madurai, Tamilnadu,

India

bDepartment of Physics, Saraswathi Narayanan College, Perungudi, Madurai,

Tamilnadu, India


Journal of Ovonic Research 2023, 19(6),793-808; https://doi.org/10.15251/JOR.2023.196.793
Submitted:Aug 15, 2023
Accepted:Dec 19, 2023
Published:Dec 20, 2023
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Cite This Article
K. Sudh ,R. Sasirek ,T. Chitravel ,T. P. Kumar . (2023). Journal of Ovonic Research. Various Cu+, Mg2+ and S2- ionic concentration effects on a novel Cu2ZnMgS4 quaternary compound synthesis for various scientific applications, 19(6), ,793-808. https://doi.org/10.15251/JOR.2023.196.793
Abstract

Copper zinc magnesium sulfide semiconducting material (Cu2ZnMgS4) compound is slightly new in electronics, opto-electronics and photo emissive field research. So that, we examined the Cu2ZnMgS4 compound formation characteristics step by step using the Copper sulfate (CuSO4.XH2O), Zinc sulfate (ZnSO4.XH2O), Magnesium sulfate (MgSO4.XH2O) and Sodium sulfide Na2S salt solutions. Characterizations such as pH, Electrical conductivity (EC), TDS were carried out for several concentrations. Further its optics properties of Cu2ZnMgS4 compound in liquid form were investigated through photo-colorimeter measurements (at various color λ including mixed band wavelengths), photo-fluorometer (using various primary and secondary filters) and UV-Vis spectrophotometer (at wavelength range of 300 to 900 nm) measurements. The investigated long term results are presented and discussed in this research article.

©2026 by the authors. Submitted for possible open access publication under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
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