首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Almost zero reflectance of a silicon oxynitride/porous silicon double layer antireflection coating for silicon photovoltaic cells
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Almost zero reflectance of a silicon oxynitride/porous silicon double layer antireflection coating for silicon photovoltaic cells

机译:用于硅光伏电池的氮氧化硅/多孔硅双层减反射涂层的反射率几乎为零

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摘要

Reflectance spectrum calculations for a silicon oxynitride (SiOxNy)-porous silicon (PS) double layer antireflection coating is performed using the matrix method. The results are compared with the corresponding spectrum of diamond-like carbon (DLC)/PS and SiO2/TiO2 double layer coatings. A lower reflectance in the visible and infrared regions of the solar spectrum for the SiOxNy/PS double layer is obtained, especially in the 450-600 nm spectral range (with a flat reflectance response remaining as low as approximate to 0.01%), which corresponds to the maximum intensity of solar irradiation. These findings are of importance in solar cell applications.
机译:使用矩阵方法对氮氧化硅(SiOxNy)-多孔硅(PS)双层减反射涂层进行反射光谱计算。将结果与类金刚石碳(DLC)/ PS和SiO2 / TiO2双层涂层的相应光谱进行比较。 SiOxNy / PS双层在太阳光谱的可见光和红外区域的反射率较低,尤其是在450-600 nm光谱范围内(平坦的反射率响应低至约0.01%),这对应于达到太阳辐射的最大强度。这些发现在太阳能电池应用中很重要。

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