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Probing the sensitivity of nanowire-based biosensors using liquid-gating

机译:使用液体门控探测基于纳米线的生物传感器的灵敏度

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We have used liquid-gating to investigate the sensitivity of nanowire (NW)-based biosensors for application in the field of ultrasensitive biodetection. We developed an equivalent capacitance model of the biosensor system to explore the dependence of the sensitivity on the liquid-gate voltage (V_(lg)), which was influenced by capacitive competition between the NW capacitance and the thin oxide capacitance. NW biosensors with highest sensitivity were obtained when we operated the device in the subthreshold regime while applying an appropriate value of V_(lg); the influence of leakage paths through the ionic solutions led, however, to significant sensitivity degradation and narrowed the operating window in the subthreshold regime.
机译:我们已经使用液体门控技术来研究基于纳米线(NW)的生物传感器在超灵敏生物检测领域中的应用敏感性。我们开发了生物传感器系统的等效电容模型,以探索灵敏度对液栅电压(V_(lg))的依赖性,该灵敏度受NW电容和薄氧化物电容之间的电容竞争的影响。当我们在亚阈值状态下操作该设备并应用适当的V_(lg)值时,获得了灵敏度最高的NW生物传感器。然而,通过离子溶液的泄漏路径的影响导致灵敏度显着下降,并在亚阈值范围内缩小了工作范围。

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