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首页> 外文期刊>The Journal of Chemical Physics >Simulation of a model nanopore sensor: Ion competition underlies device behavior
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Simulation of a model nanopore sensor: Ion competition underlies device behavior

机译:模型纳米孔传感器的仿真:离子竞争隐藏器件行为

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We study a model nanopore sensor with which a very low concentration of analyte molecules can be detected on the basis of the selective binding of the analyte molecules to the binding sites on the pore wall. The bound analyte ions partially replace the current-carrier cations in a thermodynamic competition. This competition depends both on the properties of the nanopore and the concentrations of the competing ions (through their chemical potentials). The output signal given by the device is the current reduction caused by the presence of the analyte ions. The concentration of the analyte ions can be determined through calibration curves. We model the binding site with the square-well potential and the electrolyte as charged hard spheres in an implicit background solvent. We study the system with a hybrid method in which we compute the ion flux with the Nernst-Planck (NP) equation coupled with the Local Equilibrium Monte Carlo (LEMC) simulation technique. The resulting NP+LEMC method is able to handle both strong ionic correlations inside the pore (including finite size of ions) and bulk concentrations as low as micromolar. We analyze the effect of bulk ion concentrations, pore parameters, binding site parameters, electrolyte properties, and voltage on the behavior of the device. Published by AIP Publishing.
机译:我们研究了一种型号纳米孔传感器,其可以基于分析物分子与孔壁上的结合位点的选择性结合来检测极低浓度的分析物分子。结合的分析物离子部分代替热力学竞争中的电流载体阳离子。该竞争均取决于纳米孔的性质和竞争离子的浓度(通过它们的化学势)。由装置给出的输出信号是由分析物离子的存在引起的电流减少。可以通过校准曲线确定分析物离子的浓度。我们用方形井电位和电解质模拟结合位点,在隐式背景溶剂中的带电球形。我们用一种混合方法研究系统,其中我们将与局部平衡蒙特卡罗(LEMC)仿真技术耦合的NERNST-PLANCK(NP)方程来计算离子通量。得到的NP + LEMC方法能够在孔口(包括有限尺寸的离子)内的强离子相关性和块状浓度低至微摩尔。我们分析了批量离子浓度,孔隙参数,粘合位点参数,电解质特性和电压对装置的行为的影响。通过AIP发布发布。

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