磁流体
抗磁性
材料科学
磁场
纳米技术
流体学
润湿
磁铁
微流控
磁滞
冷凝
导电体
化学物理
复合材料
凝聚态物理
化学
物理
热力学
工程类
航空航天工程
量子力学
作者
Karim S. Khalil,Seyed Reza Mahmoudi,Numan Abu-Dheir,Kripa K. Varanasi
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.
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