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Controlled microparticle manipulation employing low frequency alternating electric fields in an array of insulators

机译:在绝缘体阵列中采用低频交变电场进行受控的微粒处理

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Low frequency alternating current insulator-based dielectrophoresis is a novel technique that allows for highly controlled manipulation of particles. By varying the shape of an AC voltage applied across a microchannel containing an array of insulating cylindrical structures it was possible to concentrate and immobilize microparticles in bands; and then, move the bands of particles to a different location. Mathematical modeling was performed to analyze the distribution of the electric field and electric field gradient as function of the shape of the AC applied potential, employing frequencies in the 0.2-1.25 Hz range. Three different signals were tested: sinusoidal, half sinusoidal and sawtooth. Experimental results demonstrated that this novel dielectrophoretic mode allows highly controlled particle manipulation.
机译:低频交流电绝缘子基介电泳是一种新颖的技术,可对粒子进行高度受控的操纵。通过改变施加在包含绝缘圆柱结构阵列的微通道上的交流电压的形状,可以将微粒集中并固定在条带中。然后将粒子带移动到其他位置。使用0.2-1.25 Hz范围内的频率进行数学建模,以分析电场和电场梯度随AC施加电位的形状变化的分布。测试了三种不同的信号:正弦,半正弦和锯齿。实验结果表明,这种新型的介电泳模式可实现高度可控的粒子操纵。

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