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Continuous micro liquid delivery by evaporation on a gradient-capillary microstructure surface

机译:通过梯度毛细管微结构表面上的蒸发连续输送微液体

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摘要

An evaporation-based micropump is proposed and fabricated for delivering liquid with constant flow rates of ~100 nl s~(-1) continuously. The liquid is pumped by the surface transpiration in a micro evaporator, which consists of a gradient-capillary surface by microfabricating micropost arrays. The micropost arrays are patterned such that the gaps between microposts reduce gradually away from the center microwell to the surface edge, by which a capillary force is formed to pull the liquid spreading on the evaporator surface. A simple analytical model is proposed to obtain the primary characteristics of the micropump, by which the influences of the contact angle of fluid on the flow rate and also the corresponding parameters during the operation of micropump are analyzed. The most striking feature of the micropump is that it can be precisely and simply controlled only by varying the surface wall temperature. The results indicate that a very linear relationship between the flow rate and solid wall temperature can be achieved by the present design. Quite consistent variation trend of the flow rate with wall temperature can be obtained between the experimental tests and theoretical analysis. The present micropump concept may be potentially used in delivering a precisely controlled, continuous flow rate for many new applications in the fields of biotechnology, environmental testing and instrumentation for analytical chemistry.
机译:提出并制造了一种基于蒸发的微型泵,用于连续输送恒定流量〜100 nl s〜(-1)的液体。通过表面蒸发将液体泵送到微蒸发器中,该蒸发器通过微制造微柱阵列由梯度毛细管表面组成。对微柱阵列进行构图,以使微柱之间的间隙逐渐远离中心微孔到表面边缘,从而形成毛细作用力,以拉动散布在蒸发器表面的液体。提出了一种简单的分析模型来获得微型泵的主要特性,从而分析了流体的接触角对流量的影响以及微型泵运行过程中的相关参数。微型泵最显着的特征是,仅通过改变表面温度即可对其进行精确而简单的控制。结果表明,通过本设计可以实现流速与固体壁温度之间的非常线性的关系。在实验测试和理论分析之间,可以得到流量随壁温的一致变化趋势。本微型泵概念可潜在地用于为生物技术,环境测试和分析化学仪器领域中的许多新应用提供精确控制的连续流速。

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