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Particle manipulation and trapping in microfluidic devices using two-dimensional material

机译:使用二维材料的微流控装置中的粒子操纵和捕集

摘要

Method, apparatus, and computer program product for a microfluidic channel having a cover opposite its bottom and having electrodes with patterned two-dimensional conducting materials, such as graphene sheets integrated into the top of its bottom. Using the two-dimensional conducting materials, once a fluid sample is applied into the channel, highly localized modulated electric field distributions are generated inside the channel and the fluid sample. This generated field causes the inducing of dielectrophoretic (DEP) forces. These DEP forces are the same or greater than DEP forces that would result using metallic electrodes because of the sharp edges enabled by the two-dimension geometry of the two-dimensional conducting materials. Because of the induced forces, micro/nano-particles in the fluid sample are separated into particles that respond to a negative DEP force and particles that respond to a positive DEP. Microfluidic chips with microfluidic channels can be made using standard semiconductor manufacturing technology.
机译:用于微流体通道的方法,装置和计算机程序产品,其具有与底部相对的盖并且具有带有图案化的二维导电材料的电极,例如集成在其底部顶部的石墨烯片。使用二维导电材料,一旦将流体样品施加到通道中,便在通道和流体样品内部产生高度局部化的调制电场分布。该产生的场引起介电泳(DEP)力的感应。这些DEP力等于或大于使用金属电极会产生的DEP力,这是因为二维导电材料的二维几何形状使边缘锋利。由于感应力,流体样品中的纳米微粒被分离为对负DEP力产生响应的颗粒和对正DEP产生响应的颗粒。可以使用标准的半导体制造技术来制造具有微流体通道的微流体芯片。

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