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Detection of electrically neutral and nonpolar molecules in ionic solutions using silicon nanowires

机译:使用硅纳米线检测离子溶液中的电中性和非极性分子

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摘要

We report on a technique that can extend the use of nanowire sensors to the detection of interactions involving nonpolar and neutral molecules in an ionic solution environment. This technique makes use of the fact that molecular interactions result in a change in the permittivity of the molecules involved. For the interactions taking place at the surface of nanowires, this permittivity change can be determined from the analysis of the measured complex impedance of the nanowire. To demonstrate this technique, histidine was detected using different charge polarities controlled by the pH value of the solution. This included the detection of electrically neutral histidine at a sensitivity of 1 pM. Furthermore, it is shown that nonpolar molecules, such as hexane, can also be detected. The technique is applicable to the use of nanowires with and without a surface-insulating oxide. We show that information about the changes in amplitude and the phase of the complex impedance reveals the fundamental characteristics of the molecular interactions, including the molecular field and the permittivity.
机译:我们报告了一种技术,可以将纳米线传感器的使用扩展到检测离子溶液环境中的非极性和中性分子的相互作用。该技术利用分子相互作用导致涉及分子介电常数的变化。对于在纳米线表面进行的相互作用,可以根据纳米线的测量复杂阻抗的分析确定该介电常数变化。为了证明该技术,使用由溶液的pH值控制的不同电荷极性来检测组氨酸。这包括在1μm的敏感性下检测电中性组氨酸。此外,也显示出也可以检测诸如己烷的非极性分子。该技术适用于纳米线的使用,无需表面绝缘氧化物。我们表明有关复杂阻抗的振幅变化和阶段的相变的信息揭示了分子相互作用的基本特征,包括分子场和介电常数。

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