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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 >Combined model of non-conformal layer growth for accurate optical simulation of thin-film silicon solar cells
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Combined model of non-conformal layer growth for accurate optical simulation of thin-film silicon solar cells

机译:非共形层生长的组合模型,用于薄膜硅太阳能电池的精确光学模拟

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In thin-film silicon solar cells textured interfaces are introduced, leading to improved antireflection and light trapping capabilities of the devices. Thin-layers are deposited on surface-textured substrates or superstrates and the texture is translated to internal interfaces. For accurate optical modelling of the thin-film silicon solar cells it is important to define and include the morphology of textured interfaces as realistic as possible. In this paper we present a model of thin-layer growth on textured surfaces which combines two growth principles: conformal and isotropic one. With the model we can predict the morphology of subsequent internal interfaces in thin-film silicon solar cells based on the known morphology of the substrate or superstrate. Calibration of the model for different materials grown under certain conditions is done on various cross-sectional scanning electron microscopy images of realistic devices. Advantages over existing growth modelling approaches are demonstrated - one of them is the ability of the model to predict and omit the textures with high possibility of defective regions formation inside the Si absorber layers. The developed model of layer growth is used in rigorous 3-D optical simulations employing the COMSOL simulator. A sinusoidal texture of the substrate is optimised for the case of a micromorph silicon solar cell. More than a 50 % increase in short-circuit current density of the bottom cell with respect to the flat case is predicted, considering the defect-free absorber layers. The developed approach enables accurate prediction and powerful design of current-matched top and bottom cell.
机译:在薄膜硅太阳能电池中,引入了带纹理的界面,从而提高了器件的抗反射和光陷获能力。薄层沉积在表面纹理化的基材或上层基材上,纹理转化为内部界面。为了对薄膜硅太阳能电池进行精确的光学建模,重要的是定义并包括尽可能逼真的纹理界面形态。在本文中,我们提出了一种在带纹理的表面上进行薄层生长的模型,该模型结合了两种生长原理:共形和各向同性。利用该模型,我们可以根据已知的衬底或覆层的形态来预测薄膜硅太阳能电池中后续内部界面的形态。在实际设备的各种横截面扫描电子显微镜图像上对在特定条件下生长的不同材料的模型进行校准。证明了相对于现有生长建模方法的优势-其中之一是该模型能够预测和忽略纹理的能力,并且很有可能在Si吸收层内部形成缺陷区域。使用COMSOL模拟器在严格的3D光学模拟中使用了已开发的层生长模型。对于微晶硅太阳能电池,基板的正弦纹理得到了优化。考虑到无缺陷的吸收层,预计底部电池相对于扁平电池的短路电流密度将增加50%以上。开发的方法可以对当前匹配的顶部和底部电池进行准确的预测和强大的设计。

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