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Modeling and Design of Polythiophene Gate Electrode ChemFETs for Environmental Pollutant Sensing

机译:用于环境污染物感测的聚噻吩栅电极ChemFET的建模和设计

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摘要

Water-borne pollutants such as volatile organic compounds are a serious environmental concern, which has increased the demand for chemical sensing elements. Solidstate sensors based on catalytic gate devices are a subject of current research, however they are restricted in practical applications because of their inability to operate at room temperature. Conducting polymer FETs, which employ a conducting gate polymer, have received much attention due to their unique electronic and optical properties. Polythiophene is chosen as the semi-conductive gate polymer in this work. A functional group attached to the polythiophene is used to detect analytes (i.e., mercury in this work) of interest. The selectivity of the derivitized polythiophene to mercury can he rationalized based on the size of the ring, presence of oxygen and nitrogen donor atoms. In this paper, the modeling and design of a polythiophene gate electrode ChemFET will he discussed. Specifically the model development and resultant device simulations using Silvaco TCAD will be presented. Using this model various current-voltage characteristics of the ChemFET corresponding to parameters such as substrate doping, gate oxide thickness, various gate stacks, and device geometries are presented.
机译:诸如挥发性有机化合物之类的水基污染物是对环境的严重关注,这增加了对化学传感元件的需求。基于催化门装置的固态传感器是当前研究的主题,但是由于它们不能在室温下工作,因此在实际应用中受到限制。使用导电栅聚合物的导电聚合物FET由于其独特的电子和光学特性而备受关注。在这项工作中,选择聚噻吩作为半导体栅极聚合物。连接到聚噻吩的官能团用于检测目标分析物(即本研究中的汞)。可以基于环的大小,氧和氮供体原子的存在来合理化衍生化的聚噻吩对汞的选择性。在本文中,将讨论聚噻吩栅电极ChemFET的建模和设计。将特别介绍使用Silvaco TCAD进行模型开发和所得设备仿真。使用该模型,可以提供ChemFET的各种电流-电压特性,这些特性与诸如衬底掺杂,栅氧化层厚度,各种栅堆叠和器件几何结构等参数相对应。

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