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Molecular Sieving Using Nanofilters: Past Present and Future

机译:使用纳米过滤器的分子筛:过去现在和未来

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摘要

Filtration of molecules by nanometer-sized structures is ubiquitous in our everyday life, but our understanding of such molecular filtration processes is far less than desired. Until recently, one of the main reasons was the lack of experimental methods that can help provide detailed, microscopic pictures of molecule-nanostructure interactions. Several innovations in experimental methods, such as nuclear track-etched membranes develeoped in the 70s, and more recent development of nanofluidic molecular filters, played pivotal roles in advancing our understanding. With the ability to make truly molecular-scale filters and pores with well-defined sizes, shapes, and surface properties, now we are well positioned to engineer better functionality in molecular sieving, separation and other membrane applications. Reviewing past theoretical developments (often scattered across different fields) and connecting them to the most recent advances in the field would be essential to get a full, unified view on this important engineering question.
机译:通过纳米级结构过滤分子在我们的日常生活中无处不在,但是我们对这种分子过滤过程的了解远远达不到所希望的。直到最近,主要原因之一是缺乏能够帮助提供分子与纳米结构相互作用的详细微观图像的实验方法。实验方法的一些创新,例如70年代发展的核径迹蚀刻膜,以及纳米流体分子过滤器的最新发展,在增进我们的理解方面起着关键作用。凭借能够制造出具有明确定义的尺寸,形状和表面特性的真正的分子级过滤器和孔的能力,我们现在处于有利位置,可以在分子筛,分离和其他膜应用中设计出更好的功能。回顾过去的理论发展(通常散布在不同领域),并将它们与该领域的最新进展联系起来,对于对此重要的工程问题获得完整,统一的看法至关重要。

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