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利用疏水性材料的光调控吸附/解吸实现微流体的灵活操控。

Flexible manipulation of microfluids using optically regulated adsorption/desorption of hydrophobic materials.

作者信息

Nagai Hidenori, Irie Takashi, Takahashi Junko, Wakida Shin-ichi

机构信息

Human Stress Signal Research Center, National Institute of Advanced Industrial Science and Technology (AIST), 1-8-31 Midorigaoka, Ikeda, Osaka 563-8577, Japan.

出版信息

Biosens Bioelectron. 2007 Apr 15;22(9-10):1968-73. doi: 10.1016/j.bios.2006.08.037. Epub 2006 Oct 5.

Abstract

To realize highly integrated micro total analysis systems (microTAS), a simply controlled miniaturized valve should be utilized on microfluidic device. In this paper, we describe the application of photo-induced super-hydrophilicity of titanium dioxide (TiO2) to microfluidic manipulation. In addition, we found a new phenomenon for reversibly converting the surface wettability using a polydimethylsiloxane (PDMS) matrix and the photocatalytic properties of TiO2. While PDMS polymer was irradiated with UV, it was confirmed that hydrophobic material was released from the polymer to air. Several prepolymers were identified as the hydrophobic material with a gas chromatograph and mass spectrometer (GC/MS). Here, we successfully demonstrated the flexible manipulation of microfluid in a branched microchannel using the reversible wettability as micro opto-switching valve (MOS/V). The simultaneous control of MOS/Vs was also demonstrated on a 256-MOS/V integrated disk. The MOS/V promises to be one of the most effective flow switching valves for advanced applications in highly integrated micro/nano fluidics.

摘要

为实现高度集成的微全分析系统(microTAS),应在微流控装置上使用易于控制的小型化阀门。在本文中,我们描述了二氧化钛(TiO₂)的光致超亲水性在微流控操作中的应用。此外,我们发现了一种利用聚二甲基硅氧烷(PDMS)基质和TiO₂的光催化特性可逆转换表面润湿性的新现象。当用紫外线照射PDMS聚合物时,证实疏水性物质从聚合物释放到空气中。用气相色谱仪和质谱仪(GC/MS)鉴定了几种预聚物为疏水性物质。在此,我们成功地展示了利用可逆润湿性作为微光开关阀(MOS/V)在分支微通道中灵活操控微流体。还在一个256-MOS/V集成盘上展示了对MOS/V的同时控制。MOS/V有望成为用于高度集成的微/纳流体先进应用的最有效的流量切换阀之一。

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