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首页> 外文期刊>Journal of Micromechanics and Microengineering >Fabrication of a microfluidic channel with differently modified surfaces with a two component approach
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Fabrication of a microfluidic channel with differently modified surfaces with a two component approach

机译:使用两组分方法制造表面不同修饰的微流体通道

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We report on a two-component fabrication technique for microfluidic channels, allowing for different chemical or physical surface modifications of channel walls within one single channel. The two components are made of polydimethylsiloxane and prepared via soft lithography independently. After appropriate pre-treatment with the desired functions, the two parts are bonded together using oxygen plasma and a Fineplacer lambda system. As a proof of concept, we present the combination of electroosmosis and opposing hydrodynamic flow in a microfluidic channel leading to different velocity presigns of the resulting flow on opposite channel walls, due to different surface modifications. These results indicate an intact Pluronic F108 surface coating after assembly.
机译:我们报告了一种微流体通道的两组分制造技术,允许在一个通道内对通道壁进行不同的化学或物理表面修饰。这两种组分由聚二甲基硅氧烷制成,并分别通过软光刻法制备。经过适当的预处理后,使用氧等离子体和Fineplacer lambda系统将这两部分粘合在一起。作为概念的证明,我们介绍了电渗和微流体通道中相反的流体动力流的组合,由于不同的表面修饰,导致在相反的通道壁上产生的流速的速度先兆不同。这些结果表明组装后完整的Pluronic F108表面涂层。

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