School of Materials and Energy, Guangdong University of Technology, Guangzhou 510006, China.
Nanoscale. 2020 May 14;12(18):10026-10034. doi: 10.1039/c9nr10172a.
Nanopore-based DNA detection and analysis have been intensively pursued theoretically and experimentally over the past decade. Owing to their nanometer thickness, 2D nanopores, such as boron nitride nanopores, show great potential for achieving DNA detection at base resolution. Although 2D nanopore devices hold great promise for next-generation DNA detection, efficiently and reliably detecting different DNA sequences is still a challenging problem. To date, most of the investigated nanopores adopt circular shapes. Because of the successful fabrication of triangular nanopores, investigating the shape effect of nanopores for DNA detection has become more and more important. In this study, boron nitride nanopores with circular, hexagonal, quadrangular and triangular shapes were modeled at various sizes. The translocation of homogeneous dsDNA through these nanopores was investigated by all-atom molecular dynamic simulations. The ionic conductivity of these nanopores was characterized and formulas for the total resistance based on the pore and access resistance were derived. The ionic current, dwell time and conductance blockade of homogeneous dsDNA were compared for nanopores with different shapes. We demonstrate that the charge distribution at the pore mouth plays an important role in the transportation of ions and DNA molecules. Our findings may shed light on the design of 2D nanopores and can facilitate the development of fast, low-cost and reliable nanopore-based DNA detection.
基于纳米孔的 DNA 检测和分析在过去十年中受到了理论和实验的广泛关注。由于其纳米级厚度,二维纳米孔,如氮化硼纳米孔,在实现碱基分辨率的 DNA 检测方面具有巨大的潜力。尽管二维纳米孔器件为下一代 DNA 检测带来了巨大的前景,但高效可靠地检测不同的 DNA 序列仍然是一个具有挑战性的问题。迄今为止,大多数研究的纳米孔采用圆形形状。由于三角形纳米孔的成功制造,研究纳米孔的形状效应对 DNA 检测变得越来越重要。在本研究中,对各种尺寸的圆形、六边形、四边形和三角形氮化硼纳米孔进行了建模。通过全原子分子动力学模拟研究了均匀 dsDNA 通过这些纳米孔的迁移。对这些纳米孔的离子电导率进行了表征,并基于孔和入口电阻推导出了总电阻的公式。比较了不同形状纳米孔中均匀 dsDNA 的离子电流、停留时间和电导阻塞。我们证明了孔口的电荷分布在离子和 DNA 分子的输运中起着重要作用。我们的研究结果可能为二维纳米孔的设计提供启示,并有助于开发快速、低成本和可靠的基于纳米孔的 DNA 检测。