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Non-linear mass transport in confined nanofluidic devices for label-free bioanalysis/sensors

机译:用于无标纳米流体装置的非线性质量输送,用于无标记的无标记生物分析/传感器

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摘要

In the past decade, a significant growth of research in nanofluidics is achieved. The electric double layer (EDL) overlapped in the nanochannel/nanopores results in non-linear mass transport. To understand the principle of non-linear mass transport in nanofluidics can help us to control and manipulate mass transfer and find applications in varied fields such as energy conversion and storage, gas separation, and bioanalytical applications. In this review, we first introduce the fabrication techniques of nanofluidic devices, then demonstrate the origin mechanism of non-linear mass transport, among which the size and charge effect of nanofluidics are explained. Following that the influential factors regarding the non-linear mass transport behaviors are discussed in detail. After full understanding of the fundamental of non-linear mass transport in nanofluidics, the recent progress in label-free bioanalysis/sensors based on nanofluidic non-linear transport are highlighted. Finally, the perspectives for future directions and development are discussed for this special research field. (C) 2019 Elsevier B.V. All rights reserved.
机译:在过去的十年中,实现了纳米流体研究的显着增长。在纳米通道/纳米孔中重叠的电双层(EDL)导致非线性质量传输。为了了解纳米流体中的非线性质量传输的原理可以帮助我们控制和操纵传质,并在各种领域中找到应用,如能量转换和储存,气体分离和生物分析应用。在该综述中,首先介绍纳米流体装置的制造技术,然后证明了非线性传质的起源机制,其中解释了纳米流体的尺寸和电荷效应。在此之后,详细讨论了关于非线性传输行为的有影响因素。在全面了解纳米流体中的非线性大规模转运基础之后,突出了基于纳米流体非线性运输的无标记生物分析/传感器的最新进展。最后,对这一特殊研究领域讨论了未来方向与发展的观点。 (c)2019年Elsevier B.V.保留所有权利。

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