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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 >Management of light-trapping effect for a-Si:H/μc-Si:H tandem solar cells using novel substrates, based on MOCVD ZnO and etched white glass
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Management of light-trapping effect for a-Si:H/μc-Si:H tandem solar cells using novel substrates, based on MOCVD ZnO and etched white glass

机译:使用基于MOCVD ZnO和蚀刻白玻璃的新型基板管理a-Si:H /μc-Si:H串联太阳能电池的光阱效应

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摘要

The authors have successfully developed "W-textured" ZnO:B-coated soda-lime glass substrates with higher haze value and lower reflectance and thus, improved light-trapping effect, especially, in the long wavelength region. In order to obtain higher efficiency the authors have applied here this technique to a white glass substrate which has higher transmittance. The authors have investigated the relationship between its refractive index on each side of the glass before RIE etching and the RMS roughness of ZnO:B layer coated by the MOCVD method (on either side of the glass) after etching. For the surface morphology of the ZnO:B layer deposited on the side of the RIE-etched white glass with lower refractive index, it was found, in this study, that it shows mountain-chain-like double texture with higher haze value. Whereas ZnO:B layers deposited on soda-lime glass (SLG) investigated in a previous study, have cauliflower-like morphology and lower haze values. By using the newly developed white glass substrates, a higher short-circuit current density J_(sc) could be obtained corresponding to an improved spectral response, especially in the long wavelength regions (>500 nm). As a result, the a-Si:H/μc-Si:H solar cell fabricated on this newly developed substrate has an initial efficiency of 13.2% which is higher than the one for substrates based on soda-lime glass. This shows that this newly developed W-textured substrate is a promising solution for the deposition of high-efficiency thin-film silicon solar cells.
机译:作者已经成功开发出雾度值高,反射率低,从而改善了光陷获效果的“ W结构化” ZnO:B涂层钠钙玻璃基板,尤其是在长波长区域。为了获得更高的效率,作者在此将该技术应用于具有更高透射率的白色玻璃基板。作者研究了其在RIE蚀刻之前在玻璃两面的折射率与蚀刻后通过MOCVD方法(在玻璃的两面)涂覆的ZnO:B层的RMS粗糙度之间的关系。对于沉积在具有较低折射率的RIE刻蚀的白玻璃侧面的ZnO:B层的表面形貌,在本研究中发现它显示出具有较高雾度值的山状链状双重结构。而在先前的研究中研究发现,沉积在钠钙玻璃(SLG)上的ZnO:B层具有菜花状的形态和较低的雾度值。通过使用新开发的白色玻璃基板,可以获得更高的短路电流密度J_(sc),对应于改善的光谱响应,尤其是在长波长区域(> 500 nm)中。结果,在这种新开发的基板上制造的a-Si:H /μc-Si:H太阳能电池的初始效率为13.2%,高于基于钠钙玻璃的基板的初始效率。这表明这种新开发的W结构化衬底是用于沉积高效薄膜硅太阳能电池的有前途的解决方案。

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