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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 >Texturing of large area multi-crystalline silicon wafers through different chemical approaches for solar cell fabrication
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Texturing of large area multi-crystalline silicon wafers through different chemical approaches for solar cell fabrication

机译:通过不同的化学方法对大面积多晶硅晶片进行纹理加工,以制造太阳能电池

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摘要

Surface texturing of silicon can reduce the reflectance of-incident light and hence increase the conversion efficiency of solar cells. Comparatively lesser concentrated (10%) standard alkaline (NaOH/KOH) solution does not give good textured multi-crystalline silicon (mc-Si) surface, which could give satisfactory open-circuit voltage. This is due to grain-boundary delineation with steps formed between successive grains of different orientations. In this work an attempt has been made to obtain a well-textured mc-Si surface through three different approaches. The first two are with two different types of acid solutions and the third with concentrated alkaline NaOH. Solutions of HF-HNO3-CH3-COOH/H2O system with different concentrations of HF and HNO3 were used for texturing. The results on the effect of texturing of these three solutions on the surface morphology of very large area (125 mm x 125 mm) mc-Si wafer as well as on the performance parameters of solar cell are presented in this paper. Attempts have been made to study extensively the surface morphologies of mc-Si wafers in two effective regions of the isoetch curves of the HF:HNO3:diluent's system. Also we studied the reflectance, uniformity, spectral response, short-circuit current, open-circuit voltage, fill factor and dark current-voltage of the cells fabricated using wafers textured with the three different methods. Short-circuit current of the solar cells fabricated using acid-textured wafers were measured to be in the range of 4.93 A. This value is 0.37 and 0.14 A higher than the short-circuit current values measured in the cells fabricated with isotextured and alkaline-textured wafers, respectively. (c) 2008 Elsevier B.V. All rights reserved.
机译:硅的表面纹理化可以降低入射光的反射率,从而提高太阳能电池的转换效率。浓度相对较低(10%)的标准碱性(NaOH / KOH)溶液不能提供良好的纹理化多晶硅(mc-Si)表面,可以提供令人满意的开路电压。这是由于在具有不同方向的连续晶粒之间形成台阶而形成的晶界划界。在这项工作中,已经尝试通过三种不同的方法获得质地良好的mc-Si表面。前两种使用两种不同类型的酸溶液,第三种使用浓碱性NaOH。使用具有不同浓度的HF和HNO3的HF-HNO3-CH3-COOH / H2O体系的溶液进行纹理化。本文介绍了这三种解决方案的纹理化对非常大面积(125 mm x 125 mm)mc-Si晶片的表面形态以及太阳能电池性能参数的影响。尝试广泛研究HF:HNO3:稀释剂系统的等蚀刻曲线的两个有效区域中的mc-Si晶片的表面形态。我们还研究了使用三种不同方法制作的晶圆制造的电池的反射率,均匀性,光谱响应,短路电流,开路电压,填充因子和暗电流-电压。经测量,使用酸纹理化晶圆制造的太阳能电池的短路电流在4.93 A的范围内。该值比使用异质纹理和碱金属化晶圆制造的电池的短路电流值高0.37和0.14A。质感的晶片。 (c)2008 Elsevier B.V.保留所有权利。

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