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The Effects of Geometry and Stability of Solid-state Nanopores on Detecting Single DNA molecules

机译:固态纳米孔的几何形状和稳定性对检测单个DNA分子的影响

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摘要

In this work we use a combination of 3D-TEM tomography, energy filtered TEM, single molecule DNA translocation experiments, and numerical modeling to show a more precise relationship between nanopore shape and ionic conductance and show that changes in geometry while in solution can account for most deviations between predicted and measured conductance. We compare the structural stability of Ion Beam Sculpted (IBS), IBS-annealed, and TEM drilled nanopores. We demonstrate that annealing can significantly improve the stability of IBS made pores. Furthermore, the methods developed in this work can be used to predict pore conductance and current drop amplitudes of DNA translocation events for a wide variety of pore geometries. We discuss that chemical dissolution is one mechanism of the geometry change for SiNx nanopores and show that small modification in fabrication procedure can significantly increase the stability of IBS nanopores.
机译:在这项工作中,我们结合使用了3D-TEM层析成像,能量过滤TEM,单分子DNA易位实验和数值模型,以显示纳米孔形状和离子电导率之间更精确的关系,并表明溶液中几何形状的变化可以解释预测电导与测量电导之间的最大偏差。我们比较了离子束雕刻(IBS),IBS退火和TEM钻孔纳米孔的结构稳定性。我们证明了退火可以显着提高IBS制孔的稳定性。此外,这项工作中开发的方法可用于预测各种孔几何形状的孔电导和DNA易位事件的电流下降幅度。我们讨论化学溶解是SiNx纳米孔的几何形状变化的机制之一,并表明在制造过程中的小的修改可以显着增加IBS纳米孔的稳定性。

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