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Ionic transport in nanocapillary membrane systems

机译:纳米毛细管膜系统中的离子传输

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Species transport in nanocapillary membrane systems has engaged considerable research interest, presenting technological challenges and opportunities, while exhibiting significant deviations from conventionally well understood bulk behavior in microfluidics. Nonlinear electrokinetic effects and surface charge of materials, along with geometric considerations, dominate the phenomena in structures with characteristic lengths below 100 nm. Consequently, these methods have enabled 3D micro- and nanofluidic hybrid systems with high-chemical selectivity for precise manipulation of mass-limited quantities of analytes. In this review, we present an overview of both fundamental developments and applications of these unique nanocapillary systems, identifying forces that govern ion and particle transport, and surveying applications in separation, sensing, mixing, and chemical reactions. All of these developments are oriented toward adding important functionality in micro-total analysis systems.
机译:纳米毛细管膜系统中的物质运输已经引起了相当大的研究兴趣,提出了技术挑战和机遇,同时与微流体中的常规众所周知的本体行为表现出明显的偏差。材料的非线性电动势和表面电荷以及几何因素在特征长度低于100 nm的结构中占主导地位。因此,这些方法使具有高化学选择性的3D微流体和纳米流体混合系统成为可能,从而可以精确地操作有限数量的分析物。在这篇综述中,我们概述了这些独特的纳米毛细管系统的基本发展和应用,确定了控制离子和颗粒传输的力,以及测量了分离,传感,混合和化学反应中的应用。所有这些开发都旨在在微量总量分析系统中添加重要的功能。

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