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SelectivelySized Graphene-Based Nanopores for in Situ Single Molecule Sensing

机译:有选择地基于尺寸石墨烯的纳米孔用于原位单分子传感

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摘要

The use of nanopore biosensors is set to be extremely important in developing precise single molecule detectors and providing highly sensitive advanced analysis of biological molecules. The precise tailoring of nanopore size is a significant step toward achieving this, as it would allow for a nanopore to be tuned to a corresponding analyte. The work presented here details a methodology for selectively opening nanopores in real-time. The tunable nanopores on a quartz nanopipette platform are fabricated using the electroetching of a graphene-based membrane constructed from individual graphene nanoflakes (ø ∼30 nm). The device design allows for in situ opening of the graphene membrane, from fully closed to fully opened (ø ∼25 nm), a feature that has yet to be reported in the literature. The translocation of DNA is studied as the pore size is varied, allowing for subfeatures of DNA to be detected with slower DNA translocations at smaller pore sizes, and the ability to observe trends as the pore is opened. This approach opens the door to creating a device that can be target to detect specificanalytes.
机译:在开发精确的单分子检测器和提供高度灵敏的生物分子高级分析方面,纳米孔生物传感器的使用被设置为极为重要。精确定制纳米孔的尺寸是朝着实现这一目标迈出的重要一步,因为它将允许将纳米孔调整到相应的分析物。此处介绍的工作详细介绍了实时选择性开放纳米孔的方法。石英纳米移液器平台上的可调纳米孔是通过电腐蚀由单个石墨烯纳米薄片(直径约30 nm)构成的基于石墨烯的膜制成的。该装置的设计允许石墨烯膜从完全关闭到完全打开(直径约25 nm)的原位打开,这一特性尚未在文献中报道。随着孔径的变化,对DNA的易位性进行了研究,从而可以在较小的孔径下以较慢的DNA易位性检测到DNA的亚特征,并能够观察到随着孔的开放而出现的趋势。这种方法为创建可以检测特定目标的设备打开了一扇门分析物。

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