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具有掺杂沟道的有机场效应晶体管的分析器件模型

Analytic Device Model of Organic Field-Effect Transistors with Doped Channels.

作者信息

Liu Shiyi, Radha Krishnan Raj Kishen, Dahal Drona, Lüssem Björn

机构信息

Department of Physics, Kent State University, Kent, Ohio 44240, United States.

出版信息

ACS Appl Mater Interfaces. 2020 Nov 4;12(44):49857-49865. doi: 10.1021/acsami.0c12534. Epub 2020 Oct 26.

Abstract

Doping has been shown to not only provide additional degrees of freedom in the design of organic field-effect transistors (OFETs) but to increase their performance and stability as well. An analytical model based on the assumption of a square doping profile inside the channel is presented here that describes the effect of doping on the transfer characteristic of OFETs. The model is validated experimentally by a series of OFETs with varying doping conditions. The precise doping profile in the transistor channel is determined by fitting the capacitance/voltage response of doped metal-insulator-semiconductor (MIS) junctions using an AC small-signal drift-diffusion simulation. It is shown that the real doping profile deviates from the simplifying assumptions of the analytical model, i.e., it is found that the effective doping concentration at the dielectric/semiconductor interface is reduced. However, it is shown that the analytical model is not sensitive to this deviation as only the total density charges per unit area determine the changes in the transistor behavior. Overall, the presented theory provides new design rules that can be used to guide the development of doped OFETs with high performance.

摘要

已证明掺杂不仅在有机场效应晶体管(OFET)的设计中提供了额外的自由度,而且还提高了其性能和稳定性。本文提出了一种基于沟道内方形掺杂分布假设的分析模型,该模型描述了掺杂对OFET传输特性的影响。通过一系列具有不同掺杂条件的OFET对该模型进行了实验验证。利用交流小信号漂移扩散模拟,通过拟合掺杂金属-绝缘体-半导体(MIS)结的电容/电压响应,确定了晶体管沟道中的精确掺杂分布。结果表明,实际掺杂分布偏离了分析模型的简化假设,即在介质/半导体界面处发现有效掺杂浓度降低。然而,结果表明,分析模型对这种偏差不敏感,因为只有单位面积的总电荷密度决定了晶体管行为的变化。总体而言,所提出的理论提供了新的设计规则,可用于指导高性能掺杂OFET的开发。

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