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纳米孔:从DNA测序到工业过滤的协同作用——小孔隙,大影响。

Nanopores: synergy from DNA sequencing to industrial filtration - small holes with big impact.

作者信息

Siwy Zuzanna S, Bruening Merlin L, Howorka Stefan

机构信息

Department of Physics and Astronomy, University of California, Irvine, USA.

Department of Chemical and Biomolecular Engineering, University of Notre Dame, USA.

出版信息

Chem Soc Rev. 2023 Mar 20;52(6):1983-1994. doi: 10.1039/d2cs00894g.

Abstract

Nanopores in thin membranes play important roles in science and industry. Single nanopores have provided a step-change in portable DNA sequencing and understanding nanoscale transport while multipore membranes facilitate food processing and purification of water and medicine. Despite the unifying use of nanopores, the fields of single nanopores and multipore membranes differ - to varying degrees - in terms of materials, fabrication, analysis, and applications. Such a partial disconnect hinders scientific progress as important challenges are best resolved together. This Viewpoint suggests how synergistic crosstalk between the two fields can provide considerable mutual benefits in fundamental understanding and the development of advanced membranes. We first describe the main differences including the atomistic definition of single pores compared to the less defined conduits in multipore membranes. We then outline steps to improve communication between the two fields such as harmonizing measurements and modelling of transport and selectivity. The resulting insight is expected to improve the rational design of porous membranes. The Viewpoint concludes with an outlook of other developments that can be best achieved by collaboration across the two fields to advance the understanding of transport in nanopores and create next-generation porous membranes tailored for sensing, filtration, and other applications.

摘要

薄膜中的纳米孔在科学和工业中发挥着重要作用。单个纳米孔在便携式DNA测序以及理解纳米级传输方面带来了巨大飞跃,而多孔膜则有助于食品加工以及水和药物的净化。尽管纳米孔有着统一的用途,但单个纳米孔和多孔膜领域在材料、制造、分析和应用方面存在不同程度的差异。这种部分脱节阻碍了科学进步,因为重要的挑战最好是共同解决。本观点文章提出了这两个领域之间的协同串扰如何能在基础理解和先进膜的开发中带来可观的互利。我们首先描述主要差异,包括单个孔的原子尺度定义与多孔膜中定义较不明确的通道之间的差异。然后,我们概述了改善这两个领域之间交流的步骤,例如统一传输和选择性的测量与建模。由此产生的见解有望改进多孔膜的合理设计。本观点文章最后展望了其他一些发展,这些发展最好通过两个领域的合作来实现,以推进对纳米孔传输的理解,并制造出针对传感、过滤和其他应用定制的下一代多孔膜。

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