会议论文详细信息
2nd Colombian Congress of Electrochemistry; 2nd Symposium on Nanoscience and Nanotechnology
Synthesis and characterization of the Cu2ZnSnS4 system for photovoltaic applications
物理学;化学
Pinzón, D.L. Sánchez^1 ; Perez, G.Y. Soracá^1 ; Cuaspud, J.A. Gómez^1 ; López, E. Vera^1
Universidad Pedagógica y Tecnológica de Colombia (UPTC), Tunja, Colombia^1
关键词: Crystalline orientations;    Electrical characterization;    Photovoltaic applications;    Photovoltaic technology;    Physico-chemical characterization;    Scanning and transmission electron microscopy;    Semiconductor behaviours;    Synthesis and characterizations;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/786/1/012027/pdf
DOI  :  10.1088/1742-6596/786/1/012027
来源: IOP
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【 摘 要 】

This paper focuses on the synthesis and characterization of a ceramic material based on the Cu2ZnSnS4system, through the implementation of a hydrothermal route. For this purpose, we started from nitrate dissolutions in a 1.0mol L-1concentration, which were mixed and treated in a teflon lined vessel steel at 280°C for 48h. The Physicochemical characterization of the solid was evaluated by means of ultraviolet visible spectroscopy (UV-VIS), X-ray diffraction (XRD), Raman spectroscopy, scanning and transmission electron microscopy (SEM-TEM) and solid state impedance spectroscopy (IS). The initial characterization through UV measurements confirms a Band-gap around 1.46eV obtained by the Kubelka-Munk method, which demonstrates the effectiveness of the synthesis method in the obtaining of a semiconductor material. The XRD results confirm the obtaining of a crystalline material of pure phase with tetragonal geometry and I-42m space group. The preferential crystalline orientation was achieved along (2 2 0) facet, with crystallite sizes of nanometric order (6.0nm). The morphological aspects evaluated by means electron microscopy, confirmed the homogeneity of the material, showing specifically a series of textural and surface properties of relevant importance. Finally, the electrical characterizations allow to validate the semiconductor behaviour of CZTS system for development of photovoltaic technologies.

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