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Wireless Bipolar Nanopore Electrode for Single Small Molecule Detection

机译:用于单一小分子检测的无线双极纳米孔电极

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Solid-state nanopore-based techniques have become a promising strategy for diverse single molecule detections. Owing to the challenge in well and rapid fabrication of solid-state nanopores with the diameter less than 2 nm, small molecule detection is hard to be addressed by existing label-free nanopore methods. In this work, we for the first time propose a metal-coated wireless nanopore electrode (WNE) which offers a novel and generally accessible detection method for analyzing small molecules and ions at the single molecule/ion level. Here, a silver-coated WNE is developed as a proof-of-principle model which achieves the detection the self-generated H-2, the smallest known molecule, and Ag+ at single molecule/ion level by monitoring the enhanced ionic signatures. Under a bias potential of -800 mV, the WNE could accomplish the distinction of as low as 14 H-2 molecules and 28 Ag+ from one spike signal. The finite element simulation is introduced to suggest that the generation of H-2 at the orifice of the WNE results in the enhanced spike of ionic current. As a proof-of-concept experiment, the WNE is further utilized to directly detect Hg2+ from 100 pM to 100 nM by monitoring the frequency of the spike signals. This novel nanoelectrode provides a brand new label-free, ultrasensitive, and simple detection mechanism for various small molecules/ions detection, especially for redox analytes.
机译:基于固态的纳米孔的技术已成为不同单分子检测的有希望的策略。由于良好且快速制备直径小于2nm的固态纳米孔的挑战,难以通过现有的无标记纳米摩方法解决小分子检测。在这项工作中,我们首次提出了一种金属涂覆的无线纳米孔电极(WNE),其提供一种新颖的和一般可接近的检测方法,用于分析单分子/离子水平的小分子和离子。这里,通过监测增强的离子签名来开发银涂层的WNE作为原则上,通过监测单分子/离子水平来实现自我产生的H-2,最小的已知分子和Ag +。在-800mV的偏置电位下,WNE可以从一个尖峰信号实现低至14h-2分子和28Ag +的区别。引入有限元模拟以表明WNE孔的H-2的产生导致离子电流的增强峰值。作为概念证据实验,WNE通过监测尖峰信号的频率,进一步利用WNE直接检测从100pm至100nm到100nm。这种新型纳米电极为各种小分子/离子检测提供了一种全新的无敏感,无敏感和简单的检测机制,特别是对于氧化还原分析物。

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