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New Calculation of Charge Generation Efficiency and Photocurrent in Organic Photoconducting Device

机译:有机光电导器件中电荷产生效率和光电流的新计算

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摘要

A new approach was applied to examine the charge generation and transport in organic photoconductive devices by Monte-Carlo simulation utilizing multiple site interactions of carriers with all other charges within Coulomb radius. Stepwise generation frame was considered first by a charge separation process that was counted in two separate transactions, i.e., hopping against physical decay and dissociation against recombination. Thereafter, diffusion/ drifting process of free carriers was counted to follow. This method enables to examine readily the photocurrent generated alongside the charge generation efficiency. The field and temperature dependences of the efficiency and photocurrent were obtained comparable to Onsager's and experimental data.
机译:通过蒙特卡洛模拟,利用载流子与库仑半径内所有其他电荷的多个位点相互作用,采用一种新方法来检查有机光电导器件中的电荷生成和传输。首先通过电荷分离过程来考虑逐步生成框架,该过程在两个独立的事务中进行计数,即跳跃以防止物理衰变和分解以防止重组。此后,计算自由载流子的扩散/漂移过程。该方法使得能够容易地检查与电荷产生效率一起产生的光电流。效率和光电流的场和温度依赖性与Onsager和实验数据相当。

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