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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Aerosol Assisted Chemical Vapor Deposition of Transparent Conductive Zinc Oxide Films
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Aerosol Assisted Chemical Vapor Deposition of Transparent Conductive Zinc Oxide Films

机译:透明导电氧化锌薄膜的气溶胶辅助化学气相沉积

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Highly conductive and transparent ZnO films were synthesized by the reaction of diethyl zinc (in toluene) with methanol by dual source aerosol assisted chemical vapor deposition. These films displayed a stable sheet resistance of 7.2 Ω/□ and high transmission across the visible region comparable to commercial transparent conducting oxides (TCOs) based on oxides of tin or indium. Doping the zinc oxide structure with fluorine (trifluorotoluene) resulted in dense compact films with improved electrical properties than ZnO films with a sheet resistance of 4.5 Ω/□. These films also displayed idealized surface texturing for photovoltaic applications. Fluorine concentration was 2 at.% determined by wavelength dispersive X-ray analysis (WDX). Aluminum doped zinc oxide films were also synthesized by introducing dopant amounts of trimethylaluminium solution (in toluene) into the system. These films exhibited low sheet resistances of 14 Ω/□. The aluminum concentration in the films was 4 at.% determined by WDX.
机译:通过双源气溶胶辅助化学气相沉积法,使二乙基锌(在甲苯中)与甲醇反应,合成出高导电性和透明性的ZnO薄膜。这些薄膜显示出7.2Ω/□的稳定薄层电阻,并且在可见光区域的透射率可与基于锡或铟氧化物的商用透明导电氧化物(TCO)相媲美。用氟(三氟甲苯)掺杂氧化锌结构可得到致密的致密膜,其电性能比薄膜电阻为4.5Ω/□的ZnO膜好。这些薄膜还显示了用于光伏应用的理想表面纹理。通过波长色散X射线分析(WDX)测定,氟浓度为2at。%。还通过将掺杂量的三甲基铝溶液(在甲苯中)引入系统来合成铝掺杂的氧化锌膜。这些薄膜的薄层电阻为14Ω/□。用WDX测定膜中的铝浓度为4原子%。

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