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用于研究扩展纳米空间中受限液体的流动电势/电流测量系统。

Streaming potential/current measurement system for investigation of liquids confined in extended-nanospace.

机构信息

Department of Applied Chemistry, School of Engineering, The University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8656, Japan.

出版信息

Lab Chip. 2010 Apr 7;10(7):871-5. doi: 10.1039/b916776e. Epub 2010 Jan 20.

Abstract

The extended-nanospace, a space on the scale of 10(1)-10(3) nm, is mostly unexplored due to the lack of sufficient experimental technology. Recently, the research of liquid properties in the extended-nanospace has gathered much interest, because the behavior of water molecules in this space is between that of liquid-like bulk phase water molecules and single molecules. Due to the large surface-to-volume ratio in the channel, the surface charge of the wall directly affects the water structure and ion distribution. The streaming potential/current measurement method, which is used to evaluate surface states directly, is an important and useful method to investigate the liquid properties. In this paper, we report a new method for measuring the streaming potential/current in size-controlled 2D extended-nanospace on glass substrate. Nano-in-microfluidic systems were fabricated on fused-silica glass substrates, and the liquid was air-driven using a pressure controller. An equivalent circuit of the detection system was designed to selectively detect the potential and current in the extended-nanospace. The basic measurement principle was verified using several different experiments. The absolute values obtained for the potential and current were also compared with the theoretical values for various channel sizes (360-1650 nm), and good agreement was observed for micrometre-scale channels. This technique will be valuable for the investigation of chemistry and fluidics in the extended-nanospace.

摘要

由于缺乏足够的实验技术,扩展纳米空间(尺度为 10(1)-10(3)nm)大部分尚未被探索。最近,对扩展纳米空间中液体性质的研究引起了广泛关注,因为该空间中水分子的行为介于液态体相水分子和单个分子之间。由于通道中的表面积与体积比很大,壁面的表面电荷直接影响水的结构和离子分布。流动电势/电流测量方法是一种直接评估表面状态的重要而有用的方法,可用于研究液体性质。在本文中,我们报告了一种在玻璃基底上的尺寸可控的 2D 扩展纳米空间中测量流动电势/电流的新方法。在熔融石英玻璃基底上制造了纳米级微流控系统,使用压力控制器以空气为驱动力来驱动液体。设计了检测系统的等效电路,以选择性地检测扩展纳米空间中的电势和电流。使用几种不同的实验验证了基本测量原理。还将获得的电势和电流的绝对值与各种通道尺寸(360-1650nm)的理论值进行了比较,对于微米级通道,观察到了很好的一致性。这项技术对于扩展纳米空间中的化学和流体研究将具有重要价值。

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