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Optical and photoconductive properties of discharge‐produced amorphous silicon

机译:放电的光学和光电导特性连字符;产生的非晶硅

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Optical and photoconductive properties of discharge‐produced amorphous silicon (a‐Si) of the type used in efficient thin‐film solar cells have been studied as a function of a wide range of deposition conditions. The optical absorption, optical band gap, photoconductivity, hydrogen content, and the characteristics of the Si‐H vibrational mode ina‐Si were determined. Both substrate temperature in the range ∼200–400 °C and the type of discharge used are found to be important factors in determining the measured optical and photoconductive properties ofa‐Si. For films produced at substrate temperatures near 200 °C, dihydride bonding occurs, and the optical band gap is about 1.7 eV. As the substrate temerature increases, monohydride bonding is favored, the optical band gap decreases, the optical absorption increases, and the photoconductive properties improve. These properties are, in part, associated with the presence of bonded hydrogen. For substrate temperatures between 300 and 400 °C, the photoconductive properties are not strongly affected by changes in the substrate temperature, but are strongly influenced by the deposition technique. The Si‐H bond is shown to be stable to thermal treatments at or below the deposition temperature. This is critical for the stability ofa‐Si properties in the fabrication of solar cells and other devices at elevated temperatures.
机译:已经研究了高效薄膜太阳能电池中使用的放电产生的非晶硅(a‐Si)的光学和光导特性,作为各种沉积条件的函数。测定了Si‐H的光吸收、光带隙、光电导率、氢含量和振动模式ina‐Si的特性。∼200–400 °C范围内的衬底温度和使用的放电类型都是决定测得的硅的光学和光电导特性的重要因素。对于在接近200°C的衬底温度下生产的薄膜,会发生二氢化物键合,光学带隙约为1.7 eV。随着衬底温度的增加,有利于一氢化物键合,光学带隙减小,光吸收增加,光导性能提高。这些特性在一定程度上与键合氢的存在有关。对于300至400°C的衬底温度,光电导性能不受衬底温度变化的强烈影响,但受沉积技术的强烈影响。Si‐H键在沉积温度或以下的热处理中是稳定的。这对于在高温下制造太阳能电池和其他器件时的连字符;Si 性能的稳定性至关重要。

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