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Flexure-FET biosensor to break the fundamental sensitivity limits of nanobiosensors using nonlinear electromechanical coupling

机译:使用非线性机电耦合的Flexure-FET生物传感器突破了纳米生物传感器的基本灵敏度极限

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摘要

In this article, we propose a Flexure-FET (flexure sensitive field effect transistor) ultrasensitive biosensor that utilizes the nonlinear electromechanical coupling to overcome the fundamental sensitivity limits of classical electrical or mechanical nanoscale biosensors. The stiffness of the suspended gate of Flexure-FET changes with the capture of the target biomolecules, and the corresponding change in the gate shape or deflection is reflected in the drain current of FET. The Flexure-FET is configured to operate such that the gate is biased near pull-in instability, and the FET-channel is biased in the subthreshold regime. In this coupled nonlinear operating mode, the sensitivity (S) of Flexure-FET with respect to the captured molecule density (Ns) is shown to be exponentially higher than that of any other electrical or mechanical biosensor. In other words, while , classical electrical or mechanical biosensors are limited to Sclassical ∼ γ3NS or γ4 ln(NS), where γi are sensor-specific constants. In addition, the proposed sensor can detect both charged and charge-neutral biomolecules, without requiring a reference electrode or any sophisticated instrumentation, making it a potential candidate for various low-cost, point-of-care applications.
机译:在本文中,我们提出了一种Flexure-FET(挠性敏感场效应晶体管)超灵敏生物传感器,该传感器利用非线性机电耦合来克服经典电或机械纳米生物传感器的基本灵敏度限制。 Flexure-FET悬置栅极的刚度随目标生物分子的捕获而变化,并且栅极形状或偏转的相应变化反映在FET的漏极电流中。挠性FET被配置为工作,以使栅极在吸合不稳定性附近偏置,而FET沟道在亚阈值范围内偏置。在这种耦合的非线性工作模式下,相对于捕获的分子密度(Ns),Flexure-FET的灵敏度(S)显示出比任何其他电气或机械生物传感器的灵敏度都高。换句话说,传统的电气或机械生物传感器仅限于Sclassical〜γ3NS或γ4ln(NS),其中γi是传感器特定的常数。另外,所提出的传感器可以检测带电和中性的生物分子,而无需参考电极或任何复杂的仪器,使其成为各种低成本即时医疗应用的潜在候选者。

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