Moorthy Vijai M, Srivastava Viranjay M
Department of Electronic Engineering, University of KwaZulu-Natal, South Africa.
Recent Pat Nanotechnol. 2023 Apr 14. doi: 10.2174/1872210517666230414081056.
Applications of Organic Thin Film Transistor (OTFT) range from flexible screens to disposable sensors, making them a prominent research issue in recent decades. A very accurate and exact pH sensing determination, including biosensors, is essential for these sensors.
In this present research work, authors have proposed a nanomaterial-based OTFT for future pH monitoring and other biosensing applications. This work presents a numerical model of a pH sensor based on Carbon Nano Tubes (CNTs). Sensing in harsh conditions may be possible with the CNTs due to their strong chemical and thermal resilience. This research work describes the numerical modeling of Bottom-Gate Bottom-Contact (BGBC) OTFTs with a Semiconducting Single-Walled Carbon Nanotube (s-SWCNT) and C60 fullerene blended active layer.
The design methodology of organic nanomaterial-based OTFTs has been presented with various parameter extraction precisely its electrical characteristics, modeled by adjusting the parameters of the basic semiconductor technology. For an active layer thickness of 200 nm, the drain current of the highest-performing s-SWCNT:C60 -based OTFT structure was around 4.25 A.
This allows for an accurate representation of the device's electrical characteristics. Using Gold (Ag) Source/Drain (S/D) and back-gate electrodes as the medium for sensing, it has been realized how the thickness of the active layer impacts the performance of an OTFT for pH sensor applications.
有机薄膜晶体管(OTFT)的应用范围从柔性屏幕到一次性传感器,使其成为近几十年来一个突出的研究课题。对于这些传感器而言,包括生物传感器在内的非常精确准确的pH传感测定至关重要。
在本研究工作中,作者提出了一种基于纳米材料的OTFT,用于未来的pH监测和其他生物传感应用。这项工作提出了一种基于碳纳米管(CNT)的pH传感器的数值模型。由于碳纳米管具有很强的化学和热稳定性,因此在恶劣条件下进行传感是可能的。本研究工作描述了具有半导体单壁碳纳米管(s-SWCNT)和C60富勒烯混合有源层的底栅底接触(BGBC)OTFT的数值建模。
已经提出了基于有机纳米材料的OTFT的设计方法,并通过精确调整基本半导体技术的参数对其各种参数进行了提取,尤其是其电学特性。对于200nm的有源层厚度,性能最佳的基于s-SWCNT:C60的OTFT结构的漏极电流约为4.25A。
这使得能够准确表示器件的电学特性。使用金(银)源极/漏极(S/D)和背栅电极作为传感介质,已经实现了有源层厚度如何影响用于pH传感器应用的OTFT的性能。