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Current-voltage characteristics of disordered organic layers under space-charge-limited conditions based on the transport level concept

机译:基于传输能级概念的空间电荷受限条件下无序有机层的电流-电压特性

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摘要

An analytical model for calculating the current-voltage characteristic of disordered organic layers with unipolar conduction is developed for conditions when the injected carrier density is sufficiently high to consider deep state population and the current is space-charge-limited. The mobility is calculated based on the transport level concept. The proposed model, being physically clear, well describes the experimental current-voltage characteristics of polymers in a wide temperature range (except for extreme case of high voltages, where the transport level concept should be modified). Thus, this model simplifies calculation and improves the reliability of the theoretical modeling of carrier transport in organic light-emitting diodes.
机译:在注入的载流子密度足够高以考虑深态种群并且电流受到空间电荷限制的条件下,开发了一种用于计算具有单极性传导的无序有机层的电流-电压特性的分析模型。迁移率是根据传输级别概念计算的。所提出的模型在物理上清晰明了,可以很好地描述聚合物在宽温度范围内的实验电流-电压特性(高压的极端情况除外,在这种情况下,应修改传输能级概念)。因此,该模型简化了计算并提高了有机发光二极管中载流子传输理论模型的可靠性。

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