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Electro-thermal modeling of organic semiconductors describing negative differential resistance induced by self-heating

机译:有机半导体的电热模型描述了自热引起的负微分电阻

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We discuss self-heating of organic semiconductor devices based on Arrhenius-like conductivity laws. The self-consistent calculation of charge and heat transport explains thermal switching, bistability, and hysteresis resulting from S-shaped current-voltage curves with regions of negative differential resistance (NDR). For large area thin film organic devices we study the appearance of a spatially localized NDR region and the spatial evolution of this NDR region in dependence on the total current. We propose that in organic light emitting diodes (OLEDs) these effects are responsible for spatially inhomogeneous current flow and inhomogeneous luminance at high power.
机译:我们讨论了基于类阿伦尼乌斯电导率定律的有机半导体器件的自热。电荷和热量传输的自洽计算可解释热开关,双稳态和滞后现象,这些变化是由具有负差分电阻(NDR)区域的S形电流-电压曲线引起的。对于大面积的薄膜有机器件,我们研究了空间局部化的NDR区域的外观以及该NDR区域的空间演变(取决于总电流)。我们提出,在有机发光二极管(OLED)中,这些效应是造成空间上电流不均匀以及高功率下亮度不均匀的原因。

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