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Theory of signal and noise in double-gated nanoscale electronic pH sensors

机译:双门纳米电子pH传感器中的信号和噪声理论

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摘要

The maximum sensitivity of classical nanowire (NW)-based pH sensors is defined by the Nernst limit of 59 mV/pH. For typical noise levels in ultra-small single-gated nanowire sensors, the signal-to-noise ratio is often not sufficient to resolve pH changes necessary for a broad range of applications. Recently, a new class of double-gated devices was demonstrated to offer apparent “super-Nernstian” response (>59 mV/pH) by amplifying the original pH signal through innovative biasing schemes. However, the pH-sensitivity of these nanoscale devices as a function of biasing configurations, number of electrodes, and signal-to-noise ratio (SNR) remains poorly understood. Even the basic question such as “Do double-gated sensors actually resolve smaller changes in pH compared to conventional single-gated sensors in the presence of various sources of noise?” remains unanswered. In this article, we provide a comprehensive numerical and analytical theory of signal and noise of double-gated pH sensors to conclude that, while the theoretical lower limit of pH-resolution does not improve for double-gated sensors, this new class of sensors does improve the (instrument-limited) pH resolution.
机译:经典的基于纳米线(NW)的pH传感器的最大灵敏度由59stmV / pH的能斯特极限定义。对于超小型单门纳米线传感器中的典型噪声水平,信噪比通常不足以解决广泛应用所必需的pH变化。最近,一种新型的双门控设备被证明可以通过创新的偏置方案放大原始的pH信号,从而提供明显的“超能斯特”响应(> 59 mV / pH)。但是,这些纳米级设备的pH敏感性与偏置配置,电极数量和信噪比(SNR)的关系仍然知之甚少。即使是基本问题,例如“在存在各种噪声源的情况下,与传统的单门传感器相比,双门传感器实际上还能解决较小的pH变化吗?”仍然没有答案。在本文中,我们提供了双门pH传感器的信号和噪声的综合数值和分析理论,得出的结论是,尽管双门pH传感器的理论pH分辨率下限没有改善,但这种新型传感器确实可以提高(仪器限制的)pH分辨率。

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