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Transverse solute dispersion in microfluidic paper-based analytical devices (mu PADs)

机译:基于微流体纸的分析装置(MU PADS)中的横向溶质分散体

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摘要

The transport of molecules and particles across adjacent flow streams is a key process in several operations implemented in microfluidic paper-based analytical devices (mu PADs). Here, the transverse dispersion of analytes was quantitatively evaluated by theory and experiments. Different tests were carried out to independently measure the coefficients of both Brownian diffusion and mechanical dispersion under capillary-driven flow. The dispersion width was found to be independent of fluid velocity and analyte properties, and fully determined by the dispersivity coefficient, which is a characteristic of the paper microstructure. This information introduces a change of paradigm for the design of mixers, diluters, and concentration gradient generators on mu PADs; therefore, efforts were made to rationalize these operations on paper. The research reveals that mixers and concentration gradient generators can be much more efficient than their counterparts made on conventional microchannels; in contrast, separators such as the H-filter need to be appropriately engineered on paper, because the working principle can be hindered by mechanical dispersion. The knowledge gained throughout this work would contribute to the design of mu PADs with a new level of precision and control over the formation of localized concentration profiles.
机译:跨越流动流跨越流动流的分子和颗粒是在微流体纸的分析装置(MU焊盘)中实现的几种操作中的关键方法。这里,通过理论和实验定量评估分析物的横向分散。进行不同的测试以独立测量毛细血管驱动流动下褐色扩散和机械分散的系数。发现分散宽度与流体速度和分析物性质无关,并通过分散性系数完全确定,这是纸张微观结构的特征。此信息介绍了MU PAD上的混合器,稀释剂和浓度梯度发生器设计的范式的变化;因此,使努力在纸上合理化这些操作。该研究表明,混合器和浓度梯度发生器可以比传统微通道所制造的对应物更有效;相反,诸如H滤器的分离器需要在纸上适当地设计,因为可以通过机械分散来阻碍工作原理。在整个工作中获得的知识将有助于设计MU PADS,具有新的精度和控制局部浓度配置文件的形成。

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