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Adsorption-desorption noise in nanowire FET biosensors

机译:纳米线FET生物传感器中的吸附-解吸噪声

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The adsorption-desorption (AD) noise in nanowire FET biosensors is analyzed, which manifests itself in the form of gate voltage fluctuations resulting from the fluctuations of the number of adsorbed particles. The derived theoretical model of the fluctuations takes into account the mass transfer effects. The numerical calculations show that when the mass transfer is slow, the low-frequency amplitude and the corner frequency of the Lorentzian AD noise spectrum obtained by derived expressions are significantly different compared to the same parameters predicted by the model that neglects mass transport effects. The presented analysis enables good estimation of these parameters from the measured noise spectrum, which is important because they are used as the source of information about the analyte concentration and the kinetics of biomolecular interactions.
机译:分析了纳米线FET生物传感器中的吸附-脱附(AD)噪声,其表现为栅极电压波动的形式,该波动是由于吸附粒子数量的波动而引起的。导出的波动理论模型考虑了传质效应。数值计算表明,当传质缓慢时,与忽略传质效应的模型预测的相同参数相比,推导表达式获得的洛伦兹AD噪声谱的低频振幅和转折频率显着不同。提出的分析能够从测得的噪声频谱中很好地估计这些参数,这很重要,因为它们被用作有关分析物浓度和生物分子相互作用动力学的信息源。

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