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Fabrication and verification of DNA functionalized nanopore with gold layer embedded structure for bio-molecular sensing

机译:具有金层嵌入结构的DNA功能化纳米孔用于生物分子传感的制备和验证

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Solid-state nanopore has been attracted by its great potential for bio-molecular analysis. Nanopore is considered as promising tools for label-free single-molecule detection. As one of the techniques of nanopores, chemically modified or functionalized nanopore is considered to be a great candidate for a bio-molecule sensor. In this work, gold layer embedded nanopore was used for specific functionalization, because Au layer provides a specific binding sites for thiol (organosulfur compound) modified DNA (tm-DNA). In order to make Au layer embedded nanopore, focused Ga ion beam is used to drill a nanopore. Au layer was inserted to 20nm Si3N4 layer, which was drilled by Ga focused ion beam and functionalized by single strained DNA (SS-DNA). SS-DNA has fluorescence dye, and thiol at the each end of DNA. Functionalized nanopore was verified by analysis of fluorescence detection image.
机译:固态纳米孔已被其生物分子分析的巨大潜力所吸引。纳米孔被认为是无标记单分子检测的有前途的工具。作为纳米孔的技术之一,化学修饰或功能化的纳米孔被认为是生物分子传感器的理想选择。在这项工作中,嵌入金层的纳米孔用于特定功能化,因为Au层为硫醇(有机硫化合物)修饰的DNA(tm-DNA)提供了特定的结合位点。为了使金层嵌入纳米孔,使用聚焦的Ga离子束钻纳米孔。将金层插入20nm Si 3 N 4 层,该层通过Ga聚焦离子束钻孔并由单个应变DNA(SS-DNA)进行功能化。 SS-DNA具有荧光染料,并且在DNA的每个末端都有巯基。通过分析荧光检测图像来验证功能化的纳米孔。

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