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Antireflection properties of graphene layers on planar and textured silicon surfaces

机译:平面和纹理化硅表面上石墨烯层的抗反射性能

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摘要

In this study, theoretical and experimental investigations have been carried out to explore the suitability of graphene layers as an antireflection coating. Microwave plasma enhanced chemical vapor deposition and chemically grown graphene layers deposited on polished and textured silicon surfaces show that graphene deposition results in a large decrease in reflectance in the wavelength range of 300-650 nm, especially in the case of polished silicon. A Si_3N_4/textured silicon reference antireflection coating and graphene deposited polished and textured silicon exhibit similar reflectance values, with the graphene/Si surface showing lower reflectance in the 300-400 nm range. Comparison of experimental results with the finite difference time domain calculations shows that the graphene along with a SiO_2 surface layer results in a decrease in reflectance in the 300-650 nm range, with a reflectance value of <5% for the case of graphene deposited textured silicon surfaces. The monolayer and inert character along with the high transmittance of graphene make it an ideal surface layer. The results of the present study show its suitability as an antireflection coating in solar cell and UV detector applications.
机译:在这项研究中,进行了理论和实验研究,以探索石墨烯层作为抗反射涂层的适用性。微波等离子体增强的化学气相沉积和化学生长的石墨烯层沉积在抛光和纹理化的硅表面上,表明石墨烯沉积会导致300-650 nm波长范围内反射率大大降低,尤其是在抛光硅的情况下。 Si_3N_4 /纹理化的硅参考抗反射涂层以及石墨烯沉积的抛光和纹理化硅表现出相似的反射率值,其中石墨烯/ Si表面在300-400 nm范围内显示出较低的反射率。实验结果与时域有限差分计算的比较表明,石墨烯与SiO_2表面层一起导致300-650 nm范围内反射率降低,对于石墨烯沉积的织构,反射率值<5%硅表面。单层和惰性特性以及石墨烯的高透射率使其成为理想的表面层。本研究的结果表明其适用于太阳能电池和紫外线检测器应用中的减反射涂层。

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