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Physical Modeling of Activation Energy in Organic Semiconductor Devices based on Energy and Momentum Conservations

机译:基于能量和动量守恒的有机半导体器件中活化能的物理建模

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Field effect mobility in an organic device is determined by the activation energy. A new physical model of the activation energy is proposed by virtue of the energy and momentum conservation equations. The dependencies of the activation energy on the gate voltage and the drain voltage, which were observed in the experiments in the previous independent literature, can be well explained using the proposed model. Moreover, the expression in the proposed model, which has clear physical meanings in all parameters, can have the same mathematical form as the well-known Meyer-Neldel relation, which lacks of clear physical meanings in some of its parameters since it is a phenomenological model. Thus it not only describes a physical mechanism but also offers a possibility to design the next generation of high-performance optoelectronics and integrated flexible circuits by optimizing device physical parameter.
机译:有机器件中的场效应迁移率取决于活化能。借助能量和动量守恒方程,提出了一种新的活化能物理模型。使用所提出的模型可以很好地解释在先前独立文献的实验中观察到的活化能对栅极电压和漏极电压的依赖性。此外,所提出的模型中的表达式在所有参数中都具有明确的物理含义,其数学形式可以与众所周知的Meyer-Neldel关系相同,Meyer-Neldel关系在某些参数上缺乏明确的物理含义,因为它是一种现象学模型。因此,它不仅描述了一种物理机制,而且还提供了通过优化设备物理参数来设计下一代高性能光电和集成柔性电路的可能性。

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