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A facile and green synthesis of copper zinc tin sulfide materials for thin film photovoltaics
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A facile and green synthesis of copper zinc tin sulfide materials for thin film photovoltaics

Yi-Rung Lin, Tsu-Chin Chou, Ling-Kang Liu, Li-Chyong ChenKuei-Hsien Chen
Thin Solid Films, 卷.618, 頁碼.124-129
11/2016

摘要

Cu2ZnSnS4 Green process Thin film photovoltaics Ultrasonic spray Electronic Optical and Magnetic Materials Surfaces and Interfaces Surfaces Coatings and Films Metals and Alloys Materials Chemistry
Kesterite-type Cu 2 ZnSnS 4 (CZTS) has been attracting a lot of attention in thin-film solar cells due to its relatively low cost, earth abundant and environmentally benign nature compared to its analog Cu(In, Ga)Se 2 materials. Until now, solution-based processes are considered as promising methodologies for mass production of CZTS materials for industrial demands. However, most material sources are highly toxic as well as dangerous. In this study, we proposed a facile and green synthesis strategy for the CZTS absorber by taking advantage of an ultrasonic spray technique where we adopted metallic nanopowders and ethanol as our nontoxic precursors as well as solvents, respectively. The phase formation and transition mechanism of the synthesized CZTS film are investigated through varying sulfurization temperatures and analyzed using X-ray diffraction, Raman spectroscopy, and scanning electron microscopy. The solar cell device can be made at a scale as large as 20 × 20 mm 2 , and the cell shows a power conversion efficiency of 1.5%.

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