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Two dimensional simulation of patternable conducting polymer electrode based organic thin film transistor

机译:可图案化导电聚合物电极基有机薄膜晶体管的二维模拟

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摘要

Device characteristics of organic thin film transistor (OTFT) fabricated with conducting polyaniline: polystyrene sulphonic acid (PANi-PSS) electrodes, patterned by the Parylene lift-off method are systematically analyzed by way of two dimensional numerical simulation. The device simulation was performed taking into account field-dependent mobility, low mobility layer at the electrode-semiconductor interface, trap distribution in pentacene film and trapped charge at the organic/insulator interface. The electrical characteristics of bottom contact thin film transistor with PANi-PSS electrodes and pentacene active material is superior to those with palladium electrodes due to a lower charge injection barrier. Contact resistance was extracted in both cases by the transfer line method (TLM). The extracted charge concentration and potential profile from the two dimensional numerical simulation was used to explain the observed electrical characteristics. The simulated device characteristics not only matched the experimental electrical characteristics, but also gave an insight on the charge injection, transport and trap properties of the OTFTs as a function of different electrode materials from the perspectives of transistor operation.
机译:通过二维数值模拟系统地分析了通过聚对二甲苯剥离法构图的导电聚苯胺:聚苯乙烯磺酸(PANi-PSS)电极制备的有机薄膜晶体管(OTFT)的器件特性。进行器件仿真时要考虑到场相关的迁移率,电极-半导体界面处的低迁移率层,并五苯薄膜中的陷阱分布以及有机/绝缘体界面处的陷阱电荷。具有较低电荷注入势垒的,具有PANi-PSS电极和并五苯活性材料的底部接触薄膜晶体管的电特性优于具有钯电极的那些。在两种情况下,均通过传输线方法(TLM)提取接触电阻。从二维数值模拟中提取的电荷浓度和电势轮廓用于解释观察到的电特性。模拟的器件特性不仅与实验的电气特性相匹配,而且还从晶体管工作的角度洞察了OTFT的电荷注入,传输和陷阱性质随不同电极材料的变化。

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