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Active surfaces: Ferrofluid-impregnated surfaces for active manipulation of droplets

机译:活性表面:铁磁浸渍表面,可主动控制液滴

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摘要

Droplet manipulation and mobility on non-wetting surfaces is of practical importance for diverse applications ranging from micro-fluidic devices, anti-icing, dropwise condensation, and biomedical devices. The use of active external fields has been explored via electric, acoustic, and vibrational, yet moving highly conductive and viscous fluids remains a challenge. Magnetic fields have been used for droplet manipulation; however, usually, the fluid is functionalized to be magnetic, and requires enormous fields of superconducting magnets when transitioning to diamagnetic materials such as water. Here we present a class of active surfaces by stably impregnating active fluids such as ferrofluids into a textured surface. Droplets on such ferrofluid-impregnated surfaces have extremely low hysteresis and high mobility such that they can be propelled by applying relatively low magnetic fields. Our surface is able to manipulate a variety of materials including diamagnetic, conductive and highly viscous fluids, and additionally solid particles.
机译:对于从微流控设备,防冰,逐滴冷凝和生物医学设备在内的各种应用,液滴在非润湿表面上的操作和流动性具有重要的现实意义。已经通过电,声和振动探索了有源外部场的使用,但是移动性高导电性和粘性流体仍然是一个挑战。磁场已被用于液滴的操纵。然而,通常,流体被功能化为磁性的,并且在转变为抗磁性材料(例如水)时需要巨大的超导磁体场。在这里,我们通过稳定地将诸如铁磁流体之类的活性流体浸渍到带纹理的表面中来提供一类活性表面。此类铁磁流体浸渍表面上的液滴具有极低的磁滞和高迁移率,因此可以通过施加相对较低的磁场来推动液滴。我们的表面能够处理多种材料,包括抗磁性,导电和高粘性流体,以及固体颗粒。

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