Key Laboratory of Green Printing, Institute of Chemistry, Chinese Academy of Sciences (ICCAS), Beijing Engineering Research Center of Nanomaterials for Green Printing Technology, National Laboratory for Molecular Sciences (BNLMS), Beijing, 100190, P. R. China.
University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Angew Chem Int Ed Engl. 2020 Dec 21;59(52):23684-23689. doi: 10.1002/anie.202008477. Epub 2020 Oct 19.
Vortex flow fields are widely used to manipulate objects at the microscale in microfluidics. Previous approaches to produce the vortex flow field mainly focused on inertia flows. It remains a challenge to create vortexes in Stokes flow regime. Here we reported an evaporation induced spontaneous vortex flow system in Stokes flow regime by engineering Marangoni flow in a micro-structured microfluidic chip. The Marangoni flow is created by nonuniform evaporation of surfactant solution. Various vortexes are constructed by folding the air-water interface via microstructures. Patterns of vortexes are programmable by designing the geometry of the microstructures and are predictable using numerical simulations. Moreover, rotation of micro-objects and enrichment of micro-particles using vortex flow is demonstrated. This approach to create vortexes will provide a promising platform for various microfluidic applications such as biological analysis, chemical synthesis, and nanomaterial assembly.
涡旋流场广泛应用于微流控中对微尺度物体的操控。以往产生涡旋流场的方法主要集中在惯性流。在斯托克斯流中产生涡旋仍然是一个挑战。在这里,我们通过在微结构微流控芯片中构建马里昂戈尼流,报道了一种在斯托克斯流中蒸发诱导自发涡旋流系统。马里昂戈尼流是由表面活性剂溶液的不均匀蒸发产生的。通过微结构折叠气-液界面来构建各种涡旋。通过设计微结构的几何形状可以实现涡旋模式的可编程性,并可以通过数值模拟进行预测。此外,还演示了使用涡旋流实现微物体的旋转和微粒子的富集。这种产生涡旋的方法将为各种微流控应用提供一个有前景的平台,如生物分析、化学合成和纳米材料组装。