High-sensitivity biosensor based on junctionless transistor using Si/Si 0.5Ge0.5 hybrid heterostructure: A potential device for SARS-CoV-2 sensing

M. Fallahnejad, Maryam Shaveisi
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Abstract

In this paper, the performance of silicon-on-insulator junctionless (JL) transistors is reported as a biosensor for SARS-CoV-2 (COVID-19) detecting through proteins of virus using the dielectric modulated method (DMM). In this structure, which is designed based on Si/Si0.5Ge0.5 hybrid heterostructures junctionless transistor (HH-JLT), both cavities are placed on the side of the gates. In this way, the optimization of device is performed for cavity design by considering the effect of Hf02 regions as a spacer. The performance of the biosensor for detection is proven by analyzing the important parameters such as threshold voltage, ION/IOFF ratio and transconductance (gm). For the optimal proposed structure, the threshold voltage (Vth) and subthreshold slope (SS) sensitivity are obtained 7.5 and 0.45 respectively, for biomolecules with K=4.1. In addition of the DC sensitivity analysis, the sensitivity of RF parameters such as cutoff frequency (ft), transconductance generation factor (TGF), transconductance frequency product (TFP) and gain bandwidth product (GBW) is evaluated for charged biomolecules, the results exhibit that the increase in sensitivity with charge density changes is also considerable.
基于Si/Si 0.5Ge0.5杂化异质结构无结晶体管的高灵敏度生物传感器:一种潜在的SARS-CoV-2传感装置
本文报道了利用介电调制法(DMM)检测新冠病毒蛋白的新型生物传感器——绝缘体上无结硅(JL)晶体管的性能。在这种基于Si/Si0.5Ge0.5杂化异质结构无结晶体管(HH-JLT)设计的结构中,两个腔都放置在栅极的一侧。这样,考虑到Hf02区作为间隔区的作用,对器件进行了优化,实现了腔体设计。通过对阈值电压、ION/IOFF比、跨导等重要参数的分析,验证了生物传感器的检测性能。对于K=4.1的生物分子,最优结构的阈值电压(Vth)和亚阈值斜率(SS)灵敏度分别为7.5和0.45。除直流灵敏度分析外,还评价了截止频率(ft)、跨导产生因子(TGF)、跨导频率积(TFP)和增益带宽积(GBW)等射频参数对带电生物分子的灵敏度,结果表明灵敏度随电荷密度的变化也有相当大的增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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