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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Optically-rough and physically-flat TCO substrates for superstrate-type thin-film solar cells: Sol-gel Zn1?xMgxO coating on reaction-ion etched glass substrates
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Optically-rough and physically-flat TCO substrates for superstrate-type thin-film solar cells: Sol-gel Zn1?xMgxO coating on reaction-ion etched glass substrates

机译:用于超型薄膜太阳能电池的光学粗糙和物理平坦的TCO基板:Sol-Gel Zn 1?X MG X O涂层在反应离子蚀刻玻璃基板上

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Abstract Novel optically-rough and physically-flat transparent conductive oxides (TCO) substrates were developed by spin-coating Al doped Zn1?xMgxO (AZMO) transparent conductive thin film on roughened glass substrates treated by a reactive-ion etching (RIE) process, for enhancing the light-absorption in superstrate-type solar cells without deteriorating growth of photoactive layers. These substrates possess features of high transmittance, low surface roughness and strong light-scattering behavior. A surface morphology of randomly distributed irregular cones was formed on the Corning 7059 glass substrate through the overlapping of several lens-shaped cavities etched by the carbon tetrafluoride-oxygen plasma during the RIE process. This rough interface morphology not only has light-scattering ability, but also shows an antireflection effect at the interface between the AZMO and RIE etched glass substrate. One prototype with 40 cycles AZMO coating on a RIE etched substrate showed a root-mean-square surface roughness of 4.6nm, a sheet resistance of 75.1Ω/sq, and a haze ratio in transmission of 12.2% at the wavelength of 700nm. These TCO substrates were applied to the front electrode of superstrate-type hydrogenated amorphous Si single junction solar cells. The solar cells exhibited a current gain of 11% and an efficiency gain of 14% as well as similar open-circuit voltage and fill factor with respect to the ones deposited on the AZMO coated flat glass substrate. These substrates would enable an efficient light management and the growth of high quality
机译:<![cdata [ 抽象 通过旋涂Al掺杂Zn 1?x mg x o(azmo)通过反应离子蚀刻处理的粗糙玻璃基板上的透明导电薄膜(RIE)工艺,用于增强超级型太阳能电池的光吸收,而不会降低光活性层的生长。这些基板具有高透射率,表面粗糙度和强光散射行为的特征。在RIE工艺期间,通过碳四氟 - 氧等离子体蚀刻的几个透镜形空腔在康宁7059玻璃基板上形成随机分布的不规则锥体的表面形态。这种粗糙的界面形态不仅具有光散射能力,而且还显示了AZMO和RIE蚀刻玻璃基板之间的界面处的抗反射效果。在RIE蚀刻基板上具有40个循环Azmo涂层的一种原型显示出4.6 nm的根平均方形粗糙度,为75.1 Ω/平方,透射率为12.2%,波长为700 nm。将这些TCO底物施加到超级型氢化非晶Si单结太阳能电池的前电极。太阳能电池表现出11%的电流增益,效率增益为14%以及相似的开路电压和相对于沉积在Azmo涂覆的扁平玻璃基板上的填充系数。这些基板将实现高效的轻微管理和高质量的生长

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