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Fabrication of Transparent Heat Reflective Sb Controllable Doped SnO2 Thin Film via a Facile Infrared Lamp-assisted Spray Pyrolysis Method
Received date: 2015-12-08
Revised date: 2016-01-21
Online published: 2016-06-27
Antimony-doped tin oxide (ATO) sol was prepared by using glacial acetic acid as acidic catalyst and ethylene glycol as ligand and solvent via sol-gel method, which was further utilized to fabricate high-quality Sb controllable doped ATO thin films using spray pyrolysis with an infrared lamp as the assistant heater. The structures, electrical and optical properties of these ATO thin films were systematically investigated. The X-ray diffraction (XRD) analysis revealed that the ATO thin films retained the tetragonal rutile structure with high crystallinity. The resistance of these thin films decreased with the increase of Sb doping level and film thickness. The average transmittance for the ATO thin films in visible range was about 79 %, and the average reflectance in the infrared range was about 80%. Furthermore, the infrared reflectance and emissivity of the thin film can be effectively adjusted by varying the Sb doping concentration and film thickness, which can meet the needs of different climatic conditions.
WU Wen-ze , FU Yi-fei , LING Chun-lei , ZHUANG Fa-wei , LIANG Zhu-rong , XU De-hua , XU Xue-qing . Fabrication of Transparent Heat Reflective Sb Controllable Doped SnO2 Thin Film via a Facile Infrared Lamp-assisted Spray Pyrolysis Method[J]. Advances in New and Renewable Energy, 2016 , 4(3) : 240 -245 . DOI: 10.3969/j.issn.2095-560X.2016.03.012
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