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Structure and thickness optimization of active layer in nanoscale organic solar cells

机译:纳米有机太阳能电池活性层的结构和厚度优化

摘要

This paper presents the development of a two-dimensional model of multilayer bulk heterojunction organic nanoscale solar cells, consisting of the thickness of active layer and morphology of the device. The proposed model is utilized to optimize the device parameters in order to achieve the best performance using particle swarm optimization algorithm. The organic solar cells under research are from poly (3-hexylthiophene) and [6,6]-phenyl C61-butyric acid methyl ester type which are modelled to be investigated for performance enhancement. A three-dimensional fitness function is proposed involving domain size and active layer thickness as variables. The best results out of 20 runs of optimization show that the optimized value for domain size is 17 nm, while the short-circuit current vs. voltage characteristic shows a very good agreement with the experimental results obtained by previous researchers.
机译:本文介绍了多层体异质结有机纳米级太阳能电池的二维模型的开发,该模型由有源层的厚度和器件的形态组成。提出的模型用于优化设备参数,以使用粒子群优化算法获得最佳性能。研究中的有机太阳能电池来自聚(3-己基噻吩)和[6,6]-苯基C61-丁酸甲酯类型,它们被建模用于提高性能。提出了三维适应度函数,涉及域大小和有源层厚度作为变量。在20次优化运行中,最好的结果表明,畴尺寸的优化值为17 nm,而短路电流与电压的关系曲线与先前研究人员获得的实验结果非常吻合。

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