首页> 外文会议>Photovoltaic Specialists Conference (PVSC), 2011 37th IEEE >Nanoscale Teflon coated surface nano-roughened Si solar cells with Teflon thickness dependent efficiency and hydrophobicity
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Nanoscale Teflon coated surface nano-roughened Si solar cells with Teflon thickness dependent efficiency and hydrophobicity

机译:纳米级特氟龙涂层表面纳米粗化硅太阳能电池,具有取决于特氟龙厚度的效率和疏水性

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摘要

By employing the SiN and Teflon-like films as surface anti-reflective coatings, the sub-wavelength nano-pillar roughened poly-crystalline Si photovoltaic solar cells are characterized and compared. With 22nm-thick Teflon-like film coating, the bared Si PV cell shows filling factor and energy conversion efficiency of 0.70 and 10.89%, respectively, which are comparable with a standard cell employing standard SiN anti-reflective film to coat the bared Si PV cell. The water contact angle increases from 55° to 92.6° as the Teflon-like film thickness enlarges to 200 nm or larger, whereas the conversion efficiency of the Telfon-like film coated Si PV cell slightly degrades by 1.4% as compared to that of the bared Si PV cell. Lengthening the nano-roughened structure further results in a decreasing reflectance from 30% to 5% and an enhanced scattering to degrade the transmittance from 15% to 3% in visible wavelength region. The nano-pillar surface not only induces the multiple scattering to enhance the Haze and to reduce surface reflectance, but also shadows the incident light to reach the inner cell.
机译:通过采用SiN和类聚四氟乙烯薄膜作为表面抗反射涂层,表征和比较了亚波长纳米柱粗糙化的多晶硅光伏太阳能电池。裸露的Si PV电池具有22nm厚的特氟龙状薄膜涂层,其填充系数和能量转换效率分别为0.70和10.89%,与采用标准SiN减反射膜涂覆裸露的Si PV的标准电池相当细胞。当特氟龙状膜厚增加到200 nm或更大时,水接触角从55°增大到92.6°,而与涂膜相比,涂有Telfon状膜的Si PV电池的转换效率略微降低了1.4%。裸露的硅光伏电池。纳米化粗糙结构的加长还导致反射率从30%降低到5%,散射增强,可见光区域的透射率从15%降低到3%。纳米柱表面不仅引起多重散射以增强雾度并降低表面反射率,而且遮挡了入射光以到达内部细胞。

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