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iNAPO: an electrochemical molecule sensor based on a single ion conducting nanopore in polymer foil

机译:iNAPO:基于聚合物箔中单个离子传导纳米孔的电化学分子传感器

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The principles of fabrication and working mechanism of a (bio)molecular sensor based on a single nanopore in a polymer foil are described. Polymer foils are through-irradiated with a single ion of a heavy element at a particle accelerator. The ion damage zone in the polymer is chemically etched into a conical nanopore. The nanopore wall is functionalized by an appropriate coupling chemistry with a biorecognition unit. In an electrochemical cell, the foil acts as separation membrane. The electrolyte current flowing through the nanopore is measured as a function of the applied potential. In the presence of specific analyte molecules, which bioconjugate with the biorecognition unit, these ionic currents are changed. Thus, a highly sensitive nanosensor is available. The preparation and working principle of the nanosensor is described. As an example, results on the sensing of the alkali metal lithium, the small biomolecule glucose, and a protein (lectine) and are shown.
机译:描述了基于聚合物箔中单个纳米孔的(生物)分子传感器的制造原理和工作机理。在颗粒促进剂处用重元素的单离子对聚合物箔进行透辐射。聚合物中的离子损伤区被化学蚀刻成锥形纳米孔。纳米孔壁通过与生物识别单元的适当偶联化学而功能化。在电化学电池中,箔片充当分离膜。测量流过纳米孔的电解质电流与所施加电势的关系。在特定的分析物分子(与生物识别单元进行生物共轭)的存在下,这些离子电流发生了变化。因此,可获得高度灵敏的纳米传感器。描述了纳米传感器的制备和工作原理。作为示例,示出了对碱金属锂,小生物分子葡萄糖和蛋白质(凝集素)的感测结果。

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