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Textured substrate based organic solar cell for higher absorption and improved performance

机译:纹理基底基有机太阳能电池,可吸收较高,性能提高

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The performance of polymer-based photovoltaic devices is limited by several factors like high band-gap and low charge-carrier mobility, to name a few. Thicker active-layers have high optical absorption but the transport of carriers in them is inefficient. Thus the optimal thickness of me active-layers has to be determined carefully. This conflict can be resolved using a three-dimensional (3D) microscale textured grating shaped solar cell geometry. The solar cells in this study were fabricated on photoresist gratings to give them 3D texture required for enhanced light absorption. Introduction of texturing has a significant effect on over all power conversion efficiency of the devices. Grating based solar cell having 2 micron pitch showed improved power conversion efficiency over the flat solar cell. In addition to favorable guiding of optical modes, the improvement in efficiency is accomplished by homogenous coverage of the spin-coated active layer, which is a challenging process for non-flat surfaces. Uniform thickness in this study was facilitated by the sufficiently high pitch and low height of the underlying photoresist gratings.
机译:基于聚合物的光伏器件的性能受若干因素,如高带隙和低载流子迁移的限制,仅举几例。较厚的活性层具有高的光吸收,但载流子在其中的传输是低效率的。因此我有源层的最佳厚度必须小心地确定。这种冲突可以通过纹理化光栅形太阳能电池几何形状的三维(3D)微尺度来解决。太阳能电池在该研究中制备光致抗蚀剂光栅给他们用于增强的光吸收所需3D纹理。纹理的介绍有超过所有器件的功率转换效率的显著效果。光栅具有2微米间距系太阳能电池显示出超过平坦太阳能电池改进的功率转换效率。除了有利的导光用的模式,在效率的提高是由旋涂活性层,这对于非平坦表面的挑战过程的均匀覆盖完成。在这项研究中均匀的厚度是由足够高的间距和下面的光刻胶光栅的高度低容易。

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