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Co-solvent effect on microwave-assisted Cu2ZnSnS4 nanoparticles synthesis for thin film solar cell
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Co-solvent effect on microwave-assisted Cu2ZnSnS4 nanoparticles synthesis for thin film solar cell

Wei-Chao Chen, Venkatesh Tunuguntla, Min-Hsueh Chiu, Lian-Jiun Li, Indrajit Shown, Chih-Hao Lee, Jih-Shang Hwang, Li-Chyong ChenKuei-Hsien Chen
Solar Energy Materials and Solar Cells, 卷.161, 頁碼.416-423
03/2017

摘要

Co-solvent CZTS nanoparticles Microwave synthesis Oleylamine (OLA) Trioctylphosphine oxide (TOPO) Electronic Optical and Magnetic Materials Renewable Energy Sustainability and the Environment Surfaces Coatings and Films
Cu 2 ZnSnS 4 (CZTS) nanoparticles (NPs) were prepared in a one-step microwave-assisted synthesis using a mixture of trioctylphosphine oxide (TOPO) and oleylamine (OLA) as solvent. The reaction medium was optimized by varying the TOPO and OLA ratios to control the CZTS NPs formation. The synthesized CZTS NPs were characterized by X-ray diffraction, Raman spectroscopy, UV–vis spectroscopy, and transmission electron microscopy techniques. High quality CZTS NPs with composition of Cu 1.8 Zn 1.4 SnS 3.6 , optimum size distribution in the range of 22±4 nm and band gap of around 1.5 eV were obtained using microwave assisted synthesis method with OLA:TOPO (1:1) as co-solvent. In the microwave assisted process, the reaction temperature and time has been reduced significantly to 165 °C and 10 min respectively, as compared with other wet chemical solvothermal hot injection/ surfactant based methods. Finally, CZTSSe solar cell fabricated from the selenized microwave-assisted CZTS NPs yielded an efficiency of 4.48%; therefore, the low cost of synthesis of this high quality CZTS NPs ink and the capability of spraying for large solar cell area is very attractive.

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