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Continuous-Flow Particle Separation by 3D Insulative Dielectrophoresis Using Coherently Shaped,dc-Biased,ac Electric Fields

机译:使用相干整形,直流偏置的交流电场通过3D绝缘介电电泳进行连续流颗粒分离

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摘要

We present the development of a continuous-flow,"di-electrophoretic spectrometer" based on insulative DEP techniques and three-dimensional geometric design.Hot-embossed thermoplastic devices allow for high-throughput analysis and geometric control of electric fields via ridged microstructures patterned in a high width-to-depth aspect ratio (250:1) channel.We manipulate particles with dc-biased,ac electric fields and generate continuous-output streams of particles with a transverse outlet position specified by linear and nonlinear particle mobilities.We show,with simulation and experiment,that characteristic shape factors can be defined that capture the effects of constrictions in channel depth and that modulating the angle of these constrictions changes the resulting local DEP force.Microdevices are fabricated with an insulative constriction in channel depth,whose angle of incidence with the direction of flow varies continuously across the channel width.the resulting electric field gradients enable demonstration of a dielectrophoretic spectrometer that separates particles and controls their transverse channel position.
机译:我们介绍了基于绝缘DEP技术和三维几何设计的连续流“双电泳光谱仪”的开发。热压印热塑性器件可通过在电极上构图的脊状微结构进行电场的高通量分析和几何控制高宽宽比(250:1)的通道。我们使用直流偏置的交流电场处理粒子,并生成具有线性和非线性粒子迁移率指定的横向出口位置的连续输出粒子流。通过仿真和实验,可以定义特征形状因子,以捕获收缩深度对通道深度的影响,并且调节这些收缩角的角度会改变所产生的局部DEP力。制造的微器件在通道深度,其角度上均具有绝缘收缩入射角随流动方向在整个通道宽度上连续变化。 dients可以演示介电泳谱仪,该谱仪可以分离颗粒并控制其横向通道位置。

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