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首页> 外文期刊>Analytical chemistry >Laser Modification of Preformed Polymer Microchannels: Application To Reduce Band Broadening around Turns Subject to Electrokinetic Flow
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Laser Modification of Preformed Polymer Microchannels: Application To Reduce Band Broadening around Turns Subject to Electrokinetic Flow

机译:预先形成的聚合物微通道的激光修饰:减少绕过电动流的匝周围的带展宽的应用

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摘要

A pulsed UV excimer laser (KrF, 248 nm) was used to modify the surface charge on the side wall of hotembossed microchannels fabricated in a poly(methyl methacrylate) substrate. Subablation level fluences, less than 2385 mJ/cm~(2), were used to prevent any changes in the physical morphology of the surface. It is shown that the electroosmotic mobility, induced by an electric field applied along the length of the channel, increases by an average of 4% in the regions that have been exposed to UV laser pulses compared to nonexposed regions. Furthermore, application of UV modification to electroosmotic flow around a 90° turn results in a decrease in band broadening, as measured by the average decrease in the plate height of 40% compared to flow around a nonmodified turn. The ability to modify the surface charge on specific surfaces within a preformed plastic microchannel allows for fine control, adjustment, and modulation of the electroosmotic flow without using wall coatings or changing the geometry of the channel to achieve the desired flow profile.
机译:使用脉冲紫外准分子激光(KrF,248 nm)来修饰在聚(甲基丙烯酸甲酯)基板上制造的热压纹微通道侧壁上的表面电荷。消融水平通量小于2385 mJ / cm〜(2),用于防止表面物理形态发生任何变化。结果表明,与未曝光的区域相比,由沿通道长度施加的电场引起的电渗迁移率在已暴露于UV激光脉冲的区域中平均增加了4%。此外,将UV修饰应用于90°转弯处的电渗流会导致谱带展宽的减少,这是通过与未修饰转弯处的流高相比,板高平均降低40%来衡量的。修改预先形成的塑料微通道内特定表面上的表面电荷的能力允许对电渗流进行精细控制,调节和调制,而无需使用壁涂层或更改通道的几何形状以实现所需的流量分布。

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