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No more bonding, no more clamping, magnetically assisted membrane integration in microfluidic devices

机译:在微流控设备中不再需要粘接,不再需要夹紧,磁辅助膜集成

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摘要

The integration of porous membranes with microfluidic devices allows a simple but high-throughput mass transport control for numerous microfluidic applications, such as single-cell separation, sample analysis, and purification. In this study, we demonstrate a novel integration process of porous membranes into microfluidic devices by applying a magnetic field and hydrodynamically stabilizing them. This new approach simplifies the integration process by removing physicochemical bonding between membranes and microfluidic devices, but overcomes many practical issues observed in current methods, such as device leakage, membrane replacement, and membrane material selection. More importantly, our approach allows us to install membranes with diverse physicochemical features and spatial configurations into a single microfluidic device. This additional ability can significantly improve its performance and capability in applications. Finally, we successfully demonstrate the utilization of our membrane device for simple particle separation.
机译:多孔膜与微流控设备的集成为许多微流控应用(例如单细胞分离,样品分析和纯化)提供了一种简单但高通量的质量传递控制。在这项研究中,我们通过施加磁场并对其进行流体动力学稳定化,证明了多孔膜进入微流体装置的新型整合过程。这种新方法通过消除膜与微流控设备之间的物理化学键合简化了集成过程,但克服了当前方法中观察到的许多实际问题,例如设备泄漏,膜更换和膜材料选择。更重要的是,我们的方法使我们能够将具有多种物理化学特征和空间构型的膜安装到单个微流体装置中。此附加功能可以显着提高其在应用程序中的性能和功能。最后,我们成功地证明了我们的膜装置可用于简单的颗粒分离。

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