首页|(162838)Effect of RF sputter power on deposition of CZTX (X=S, Se) active layer without selenization/sulfurization, for solar cell applications

(162838)Effect of RF sputter power on deposition of CZTX (X=S, Se) active layer without selenization/sulfurization, for solar cell applications

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Copper Zinc Tin Selenide Cu_2ZnSnSe_4 (CZTSe) and Copper Zinc Tin Sulfide Cu_2ZnSnS_4 (CZTS) thin films were deposited from a multicomponent single target with different RF sputter powers and a constant annealing temperature of 450°C. One step deposition with in-situ annealing was performed in order to avoid the individual metal losses during the process. Effects of various deposition parameters were investigated to finely control the elemental ratio of the quaternary target which in-turn helps to obtain the desired stoi-chiometry suitable for solar absorber materials as confirmed from EDS analysis. The phase purity of thin films was investigated and confirmed using XRD and Raman spectroscopy. A thin film solar cell device with n-CdS, ZnO, ZnO:Al layers and Al grids over the prepared kesterite CZTX (X = S, Se) films were deposited on Mo coated soda lime glass using complete vacuum deposition technique. Even though the optical, electrical and structural results are promising, the conversion efficiency for these single step processed CZTSe and CZTS solar cell devices were limited to 3.72% and 2.6% due to possible interface effect and smaller grain size of the deposited films. Considering the industrial fabrication of kesterite thin film solar cells, this processes assures an environmental friendly approach with inherent purity leading to one-step reduction in the mass production process.

CZTX(X = SSe)In-situ processCrystal structureBand alignmentGrain boundaries

O.K. Simya、T. Vijayaraghavan、B. Subramanian

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Functional Materials Laboratory, PSC Institute of Advanced Studies, Coimbatore 641004, Tamil Nadu, India

Electroplating and Metal Finishing Division, CSIR-Central Electrochemical Research Institute, Karaikudi 630003, Tamil Nadu, India

2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.898
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