Chou Yung-Chien, Lin Chih-Yuan, Castan Alice, Chen Joshua, Keneipp Rachael, Yasini Parisa, Monos Dimitri, Drndić Marija
Department of Physics and Astronomy, University of Pennsylvania, Philadelphia, PA, USA.
Department of Pathology and Laboratory Medicine, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA, USA.
Nat Nanotechnol. 2024 Nov;19(11):1686-1692. doi: 10.1038/s41565-024-01746-7. Epub 2024 Aug 14.
Rapid sensing of molecules is increasingly important in many studies and applications, such as DNA sequencing and protein identification. Here, beyond atomically thin 2D nanopores, we conceptualize, simulate and experimentally demonstrate coupled, guiding and reusable bilayer nanopore platforms, enabling advanced ultrafast detection of unmodified molecules. The bottom layer can collimate and decelerate the molecule before it enters the sensing zone, and the top 2D pore (~2 nm) enables position sensing. We varied the number of pores in the bottom layer from one to nine while fixing one 2D pore in the top layer. When the number of pores in the bottom layer is reduced to one, sensing is performed by both layers, and distinct T- and W-shaped translocation signals indicate the precise position of molecules and are sensitive to fragment lengths. This is uniquely enabled by microsecond resolution capabilities and precision nanofabrication. Coupled nanopores represent configurable multifunctional systems with inter- and intralayer structures for improved electromechanical control and prolonged dwell times in a 2D sensing zone.
分子的快速传感在许多研究和应用中变得越来越重要,例如DNA测序和蛋白质鉴定。在这里,除了原子级薄的二维纳米孔之外,我们构思、模拟并通过实验证明了耦合、引导和可重复使用的双层纳米孔平台,能够对未修饰的分子进行先进的超快速检测。底层可以在分子进入传感区域之前使其准直并减速,而顶部的二维孔(约2纳米)可实现位置传感。我们在顶层固定一个二维孔的同时,将底层的孔数从一个变化到九个。当底层的孔数减少到一个时,两层都进行传感,独特的T形和W形易位信号表明分子的精确位置,并且对片段长度敏感。这是通过微秒级分辨率能力和精密纳米制造独特实现的。耦合纳米孔代表了具有层间和层内结构可配置的多功能系统,用于改善机电控制并延长在二维传感区域的停留时间。