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On the dependency of equivalent circuit parameters of heterojunction bilayer copper phthalocyanine/perylene photovoltaic device on light intensity based on reverse bias characteristic

机译:基于反向偏置特性的杂交双层铜酞菁/ PELENTONE岩晶型/ PELENTON光伏器件对光强度等效电路参数的依赖性

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In order to study the dependency of organic photovoltaic device on light intensity, we investigate the current density-bias voltage characteristics of phthalocyanine/perylene thin film heterojunction photovoltaic device under illumination of various intensities. We use the standard one diode equivalent circuit to model the device and calculate the parameters included in the model. In calculating the parameters, we use the formula for short circuit current density and open circuit voltage and consider the reverse bias characteristics of the device, which provides two additional equations from only one additional fitting. Using this approach, we have four equations to determine five parameters. From our calculation, we find that the parameters depend on the intensity of light illumination that subsequently results on the decreasing of the performance of the device. The ideality factor and the photocurrent density is found to be linearly dependent on light intensity. The decreasing of parallel and series resistance when the light intensity increases is also found and, together with the linear-increasing of the value of ideality factor, are suspected to be the source of the decreasing of the device performance.
机译:为了研究有机光伏器件对光强度的依赖性,我们研究了各种强度照射下酞菁/泛薄膜异质结的电流密度 - 偏置电压特性。我们使用标准的一个二极管等效电路来模拟设备并计算模型中包含的参数。在计算参数时,我们使用用于短路电流密度和开路电压的公式,并考虑设备的反向偏置特性,这提供了两种附加方程,只有一个额外的配件。使用这种方法,我们有四个方程来确定五个参数。从我们的计算来看,我们发现参数取决于光照的强度,随后导致设备性能的降低。发现理想因子和光电流密度线性地取决于光强度。当发现光强度增加时平行和串联电阻的降低以及与理想因子值的线性增加一起被怀疑是设备性能降低的源。

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