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Fabrication of Subnanometer-Precision Nanopores in Hexagonal Boron Nitride

机译:六方氮化硼中亚纳米级精密纳米孔的制备

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摘要

We demonstrate the fabrication of individual nanopores in hexagonal boron nitride (h-BN) with atomically precise control of the pore shape and size. Previous methods of pore production in other 2D materials typically create pores with irregular geometry and imprecise diameters. In contrast, other studies have shown that with careful control of electron irradiation, defects in h-BN grow with pristine zig-zag edges at quantized triangular sizes, but they have failed to demonstrate production and control of isolated defects. In this work, we combine these techniques to yield a method in which we can create individual size-quantized triangular nanopores through an h-BN sheet. The pores are created using the electron beam of a conventional transmission electron microscope; which can strip away multiple layers of h-BN exposing single-layer regions, introduce single vacancies, and preferentially grow vacancies only in the single-layer region. We further demonstrate how the geometry of these pores can be altered beyond triangular by changing beam conditions. Precisely size- and geometry-tuned nanopores could find application in molecular sensing, DNA sequencing, water desalination, and molecular separation.
机译:我们展示了六角形氮化硼(h-BN)中单个纳米孔的制造,并通过原子方式精确控制了孔的形状和大小。在其他2D材料中产生孔的先前方法通常会创建具有不规则几何形状和不精确直径的孔。相反,其他研究表明,通过仔细控制电子辐射,h-BN中的缺陷会以原始的锯齿形边缘以量化的三角形尺寸生长,但是它们未能证明产生和控制孤立的缺陷。在这项工作中,我们将这些技术结合起来,产生了一种方法,通过该方法,我们可以通过h-BN薄板创建单个尺寸量化的三角形纳米孔。孔是使用传统的透射电子显微镜的电子束产生的。它可以剥离暴露于单层区域的h-BN的多​​层结构,引入单个空位,并且仅在单层区域优先生长空位。我们进一步证明了如何通过改变束流条件将这些孔的几何形状改变成三角形以外的形状。精确调整尺寸和几何形状的纳米孔可用于分子传感,DNA测序,水脱盐和分子分离。

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