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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Monte Carlo Simulation for Investigation of Morphology Dependent Charge Transport in Bulk-Heterojunction Organic Solar Cells
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Monte Carlo Simulation for Investigation of Morphology Dependent Charge Transport in Bulk-Heterojunction Organic Solar Cells

机译:Monte Carlo仿真,用于调查体形态依赖电荷运输在散装 - 异质结上有机太阳能电池

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摘要

Morphology, the spatial distribution of traps, interdomain connectivity, and phase separation of the active layer play a critical role in the performance of the bulk heterojunction (BHJ) organic solar cells (OSCs). In this work, we utilize the hopping transport model to simulate the effect of morphological and structural parameters on the diffusion coefficient and efficiency of the polymer-fullerene BHJ solar cells. In BHJ solar cells there are two distinct phases as electron transport material (acceptor) and hole transport material (donor). Here we try to create an almost realistic network containing P3HT polymer chains and PCBM clusters for simulating the charge transport in the active layer. The blend ratio of P3HT:PCBM polymers and alignment of these bicontinuous networks of active layer are considered here as the morphological parameter affecting the cell performance. The dependency of the charge transport on such morphological parameters is obtained in this study by using Monte Carlo continues time random walk simulations.
机译:形态学,活性层的陷阱,互联连接和相分离的陷阱的空间分布在散装异质结(BHJ)有机太阳能电池(OSC)的性能中起着关键作用。在这项工作中,我们利用跳跃传输模型来模拟形态学和结构参数对聚合物 - 富勒烯BHJ太阳能电池扩散系数和效率的影响。在BHJ太阳能电池中,有两个不同的阶段作为电子传输材料(受体)和空穴传输材料(供体)。在这里,我们尝试创建一个含有P3HT聚合物链和PCBM簇的几乎现实的网络,用于模拟有源层中的电荷传输。 P3HT:PCBM聚合物和这些双连续网络的对准的混合比在此考虑为影响细胞性能的形态学参数。通过使用Monte Carlo继续时间随机步行模拟,在该研究中获得了电荷传输对这种形态参数的依赖性。

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