颗粒通过三维硅电极的连续流介电泳分选,具有卡斯特状侧壁

Xiaoxing Xing, L. Yobas
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引用次数: 1

摘要

颗粒的连续流介电泳分选已被证明使用一个简单的微流体设计结合三维电极与卡斯特状侧壁。通过硅基平台上的单掩模工艺,制造了两种不同的设计,其侧壁和分离结轮廓略有不同。这些3D硅电极已经显示出将聚苯乙烯珠子沿着通道深度分离成不同的流动层的能力,同时通过特定设计的下游连接点将它们输送到单独的出口。通过以1.5 mm/s的速度连续分选1 μm和10 μm珠的混合物,证明了这两种结构的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Continuous-flow dielectrophoretic sorting of particles via 3D silicon electrodes featuring castellated sidewalls
Continuous-flow dielectrophoretic sorting of particles has been demonstrated using a simple microfluidic design incorporating 3D electrodes with castellated sidewalls. Two variations of the design have been fabricated, slightly differing in their sidewall and separation junction profiles, through a single-mask process on silicon-based platforms. These 3D silicon electrodes have shown the capacity to segregate polystyrene beads into distinct flow layers along the channel depth while delivering them to separate outlets through a downstream junction of a specific design. The utility of either structure has been showcased by sorting a mixture of 1 and 10 μm beads based on their size continuously at a velocity of 1.5 mm/s.
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