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Analytical Model for Voltage-Dependent Photo and Dark Currents in Bulk Heterojunction Organic Solar Cells

机译:体异质结有机太阳能电池中电压相关的光电流和暗电流的解析模型

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摘要

A physics-based explicit mathematical model for the external voltage-dependent forward dark current in bulk heterojunction (BHJ) organic solar cells is developed by considering Shockley-Read-Hall (SRH) recombination and solving the continuity equations for both electrons and holes. An analytical model for the external voltage-dependent photocurrent in BHJ organic solar cells is also proposed by incorporating exponential photon absorption, dissociation efficiency of bound electron-hole pairs (EHPs), carrier trapping, and carrier drift and diffusion in the photon absorption layer. Modified Braun’s model is used to compute the electric field-dependent dissociation efficiency of the bound EHPs. The overall net current is calculated considering the actual solar spectrum. The mathematical models are verified by comparing the model calculations with various published experimental results. We analyze the effects of the contact properties, blend compositions, charge carrier transport properties (carrier mobility and lifetime), and cell design on the current-voltage characteristics. The power conversion efficiency of BHJ organic solar cells mostly depends on electron transport properties of the acceptor layer. The results of this paper indicate that improvement of charge carrier transport (both mobility and lifetime) and dissociation of bound EHPs in organic blend are critically important to increase the power conversion efficiency of the BHJ solar cells.
机译:通过考虑Shockley-Read-Hall(SRH)重组并求解电子和空穴的连续性方程,建立了基于物理的显式数学模型,用于整体异质结(BHJ)有机太阳能电池中与外部电压相关的正向暗电流。通过结合指数光子吸收,束缚电子-空穴对(EHPs)的解离效率,载流子俘获以及载流子在光子吸收层中的扩散和扩散,提出了BHJ有机太阳能电池中依赖外部电压的光电流的分析模型。修改后的Braun模型用于计算结合的EHP的电场依赖性解离效率。计算总净电流时要考虑实际的太阳光谱。通过将模型计算与各种已发布的实验结果进行比较来验证数学模型。我们分析了接触特性,共混物组成,电荷载流子传输特性(载流子迁移率和寿命)以及电池设计对电流-电压特性的影响。 BHJ有机太阳能电池的功率转换效率主要取决于受体层的电子传输特性。本文的结果表明,改善有机混合中电荷载流子的迁移(迁移率和寿命)以及结合的EHP的解离对于提高BHJ太阳能电池的功率转换效率至关重要。

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