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Model for the electro-mechanical behavior of elastic organic transistors

机译:弹性有机晶体管的电力行为模型

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Organic thin film transistors (TFTs) can be made with materials that allow them to be mechanically stretched during electrical operation. We describe the application of mechanical models of the elasticity of polymers to predict the electrical characteristics of elastic TFTs. The model predicts the current-voltage behavior of TFTs under uniaxial and biaxial deformation assuming stretchable elements for contacts, dielectrics, and the semiconducting layer. The behavior of complementary inverters using elastic TFTs is presented along with criteria for stable operation as digital circuit elements. The mechanical model was also applied to organic electrochemical transistors (OECTs). The behavior of elastic OECTs differs substantially from TFTs and the model predicts that they can provide benefits for the stability of simple digital circuits.
机译:有机薄膜晶体管(TFT)可以用允许它们在电操作期间机械拉伸的材料制成。 我们描述了施加聚合物弹性的机械模型,以预测弹性TFT的电特性。 假设触点,电介质和半导体层的可拉伸元件,该模型预测单轴和双轴变形下TFT的电流 - 电压行为。 使用弹性TFT的互补逆变器的行为以及作为数字电路元件的稳定操作的标准。 机械模型也应用于有机电化学晶体管(OET)。 弹性OECT的行为与TFT基本上不同,并且模型预测它们可以为简单数字电路的稳定性提供益处。

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