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Electrical and Optical Characterization of Sputtered Silicon Dioxide Indium Tin Oxide and Silicon Dioxide/Indium Tin Oxide Antireflection Coating on Single-Junction GaAs Solar Cells

机译:单结GaAs太阳能电池上溅射的二氧化硅氧化铟锡和二氧化硅/氧化铟锡抗反射涂层的电学和光学特性

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摘要

This study characterized the electrical and optical properties of single-junction GaAs solar cells coated with antireflective layers of silicon dioxide (SiO2), indium tin oxide (ITO), and a hybrid layer of SiO2/ITO applied using Radio frequency (RF) sputtering. The conductivity and transparency of the ITO film were characterized prior to application on GaAs cells. Reverse saturation-current and ideality factor were used to evaluate the passivation performance of the various coatings on GaAs solar cells. Optical reflectance and external quantum efficiency response were used to evaluate the antireflective performance of the coatings. Photovoltaic current-voltage measurements were used to confirm the efficiency enhancement obtained by the presence of the anti-reflective coatings. The conversion efficiency of the GaAs cells with an ITO antireflective coating (23.52%) exceeded that of cells with a SiO2 antireflective coating (21.92%). Due to lower series resistance and higher short-circuit current-density, the carrier collection of the GaAs cell with ITO coating exceeded that of the cell with a SiO2/ITO coating.
机译:这项研究表征了单结GaAs太阳能电池的电学和光学特性,该太阳能电池涂有抗反射层的二氧化硅(SiO2),铟锡氧化物(ITO)和使用射频(RF)溅射法涂覆的SiO2 / ITO混合层。在应用于GaAs电池之前,先对ITO膜的导电性和透明性进行了表征。反向饱和电流和理想因子用于评估GaAs太阳能电池上各种涂层的钝化性能。使用光学反射率和外部量子效率响应来评估涂层的抗反射性能。光伏电流-电压测量被用于确认通过抗反射涂层的存在而获得的效率提高。具有ITO抗反射涂层的GaAs电池的转换效率(23.52%)超过具有SiO2抗反射涂层的GaAs电池的转换效率(21.92%)。由于较低的串联电阻和较高的短路电流密度,具有ITO涂层的GaAs电池的载流子收集超过了具有SiO2 / ITO涂层的电池的载流子收集。

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