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用于精确电动响应的拟一维微纳流控器件。

Pseudo 1-D Micro/Nanofluidic Device for Exact Electrokinetic Responses.

机构信息

Department of Electrical and Computer Engineering, Seoul National University , Seoul 08826, Republic of Korea.

Department of Mechanical and Aerospace Engineering, Seoul National University , Seoul 08826, Republic of Korea.

出版信息

Langmuir. 2016 Jun 28;32(25):6478-85. doi: 10.1021/acs.langmuir.6b01178. Epub 2016 Jun 13.

Abstract

Conventionally, a 1-D micro/nanofluidic device, whose nanochannel bridged two microchannels, was widely chosen in the fundamental electrokinetic studies; however, the configuration had intrinsic limitations of the time-consuming and labor intensive tasks of filling and flushing the microchannel due to the high fluidic resistance of the nanochannel bridge. In this work, a pseudo 1-D micro/nanofluidic device incorporating air valves at each microchannel was proposed for mitigating these limitations. High Laplace pressure formed at liquid/air interface inside the microchannels played as a virtual valve only when the electrokinetic operations were conducted. The identical electrokinetic behaviors of the propagation of ion concentration polarization layer and current-voltage responses were obtained in comparison with the conventional 1-D micro/nanofluidic device by both experiments and numerical simulations. Therefore, the suggested pseudo 1-D micro/nanofluidic device owned not only experimental conveniences but also exact electrokinetic responses.

摘要

传统上,在基础电动动力学研究中,广泛选择了一种 1-D 微/纳流控装置,其纳米通道桥接两个微通道;然而,由于纳米通道桥的高流体阻力,该配置具有填充和冲洗微通道的耗时和劳动密集型任务的固有局限性。在这项工作中,提出了一种伪 1-D 微/纳流控装置,在每个微通道中都装有气阀,以减轻这些限制。当进行电动操作时,在微通道内的液/气界面处形成的高拉普拉斯压力仅充当虚拟阀。通过实验和数值模拟,与传统的 1-D 微/纳流控装置相比,获得了离子浓度极化层传播和电流-电压响应的相同电动行为。因此,所提出的伪 1-D 微/纳流控装置不仅具有实验上的便利性,而且具有精确的电动响应。

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