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Carrier motion effect on bilayer graphene nanoribbon base biosensor model

机译:载流子运动对双层石墨烯纳米带基生物传感器模型的影响

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Graphene nanoribbon (GNR) because of its unique electrical properties has been employed in many applications, such as batteries, energy storage devices and biosensors. In this paper modelling of bilayer graphene nanoribbon (BGNR) sensor is in our focus. Based on the presented model BGNR quantum capacitance variation effect by the PSA injected electrons in to the FET channel as a sensing mechanism is considered. Also carrier movement in BGNR as another modelling parameter is suggested. In this paper prostate specific antigen (PSA) adsorption and local pH value by injected carriers on the surface of bilayer BGNR is modelled. Carrier concentration as a function of control parameters (f, p) is predicted. Finally comparison study are illustrated which indicates good agreement between proposed model and experimental data. We are concluded that the current variation on the biosensor is controlled by PSA concentration and local pH values.
机译:石墨烯纳米带(GNR)由于其独特的电性能已被用于许多应用中,例如电池,能量存储设备和生物传感器。在本文中,我们将重点研究双层石墨烯纳米带(BGNR)传感器的建模。基于提出的模型,考虑了通过PSA将电子注入FET沟道作为传感机制而产生的BGNR量子电容变化效应。还建议将BGNR中的载架移动作为另一个建模参数。本文对双层BGNR表面上注射的载体对前列腺特异性抗原(PSA)的吸附和局部pH值进行了建模。预测了载体浓度随控制参数(f,p)的变化。最后进行了比较研究,表明所提出的模型与实验数据之间具有很好的一致性。我们得出的结论是,生物传感器上的电流变化受PSA浓度和局部pH值控制。

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