首页> 外文会议>Proceedings of the ASME microanoscale heat and mass transfer international conference 2012 : Microanofluidics and Lab-on-a-chip .... >STUDY OF THE EFFECT OF PHOTONIC CRYSTALS ON ABSORPTANCE AND EFFICIENCY OF ABSORPTION OF TWO ORGANIC PHOTOVOLTAIC CELLS BY THE FINITE ELEMENT METHOD
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STUDY OF THE EFFECT OF PHOTONIC CRYSTALS ON ABSORPTANCE AND EFFICIENCY OF ABSORPTION OF TWO ORGANIC PHOTOVOLTAIC CELLS BY THE FINITE ELEMENT METHOD

机译:光子晶体对两个有机光伏电池吸收和吸收效率的有限元研究

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摘要

The present numerical work describes the simulation and analysis of the absorptance and absorption efficiency of a solar cell, where the effect of utilizing photonic crystals as an active material of the cell was studied. The study was performed by numerical simulations using a computational code based on the Finite Element Method [1]. The results were obtained for photonic crystals with periodicity in both one and two dimensions [2]. In the first one, periodicity, thickness of the active material, and distance with respect to the electrode for hole collection were varied, and two organic materials for the active zone were tested, P3HT:PCBM and TDPT:PCBM. In the case of crystals with periodicity in two dimensions, only the period in one of the two dimensions was varied, based on the cell with the highest efficiency of absorption proposed for cells with periodic photonic crystals in one dimension. All simulations were obtained for waves with TM polarization, zero angle of incidence and wavelengths between 400 and 700 nm.
机译:本数值工作描述了太阳能电池的吸收率和吸收效率的模拟和分析,其中研究了利用光子晶体作为电池活性材料的效果。该研究是通过基于有限元方法的计算代码通过数值模拟进行的[1]。对于一维和二维都具有周期性的光子晶体,可以获得结果[2]。在第一个实验中,改变了活性材料的周期性,厚度以及相对于用于收集空穴的电极的距离,并测试了两种用于活性区的有机材料:P3HT:PCBM和TDPT:PCBM。在具有二维周期性的晶体的情况下,基于针对一维具有周期性光子晶体的单元所提出的吸收效率最高的单元,仅改变二维之一中的周期。对于具有TM偏振,零入射角和400至700 nm之间波长的波,获得了所有模拟。

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