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基于电润湿的pH值和生物分子响应阀及pH值过滤器。

Electrowetting-based pH- and biomolecule-responsive valves and pH filters.

作者信息

Yamaguchi Shigeki, Morimoto Katsuya, Fukuda Junji, Suzuki Hiroaki

机构信息

Graduate School of Pure and Applied Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

Biosens Bioelectron. 2009 Mar 15;24(7):2171-6. doi: 10.1016/j.bios.2008.11.013. Epub 2008 Nov 25.

Abstract

An electrowetting-based pH-responsive valve that uses a nonstandard electrochemical three-electrode system is proposed. The system comprises a gold valve electrode and an iridium electrode that act as the working and auxiliary electrodes, depending on the purpose, while an iridium oxide pH-sensitive electrode acts as the reference electrode. To make the valve open at pH higher than a threshold, the gold valve electrode is used as the working electrode and a voltage is applied to it with respect to the pH-sensitive reference electrode. To make the valve open at pH lower than the threshold, the gold valve electrode is used as the auxiliary electrode, while the iridium electrode is used as the working electrode. The wettability of the valve electrode is altered when a voltage is applied to it. When the pH of a solution crosses the threshold, the potential of the gold valve electrode exceeds a threshold potential because of the change in the potential of the pH-sensitive reference electrode. Consequently, the gold valve electrode becomes more hydrophilic, thereby allowing the solution to pass through the valve. Furthermore, by combining two valve electrodes, we realized a pH filter that allows solutions with pH within a limited range to pass through it. Urea- and glucose-responsive valves that opened at concentrations higher than the threshold could also be formed by immobilizing an enzyme on the pH-sensitive reference electrode.

摘要

提出了一种基于电润湿的pH响应阀,该阀使用非标准电化学三电极系统。该系统包括一个金阀电极和一个铱电极,根据用途分别作为工作电极和辅助电极,而氧化铱pH敏感电极作为参比电极。为使阀在pH高于阈值时打开,将金阀电极用作工作电极,并相对于pH敏感参比电极对其施加电压。为使阀在pH低于阈值时打开,将金阀电极用作辅助电极,而将铱电极用作工作电极。当对阀电极施加电压时,其润湿性会发生改变。当溶液的pH越过阈值时,由于pH敏感参比电极电位的变化,金阀电极的电位超过阈值电位。因此,金阀电极变得更亲水,从而使溶液能够通过阀。此外,通过组合两个阀电极,我们实现了一个pH过滤器,该过滤器允许pH在有限范围内的溶液通过。通过将酶固定在pH敏感参比电极上,还可以形成在浓度高于阈值时打开的尿素和葡萄糖响应阀。

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