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Measurement of dielectrophoretic force by employing controllable gravitational force

机译:通过控制重力来测量介电泳力

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Dielectrophoresis (DEP) is the motion of a matter caused by polarization effects in a non-uniform electric field. Recently, studies on DEP are promoted in various medical fields, including separation and characterization of biological cells. It is very important but not easy to measure this motive force, so-called dielectrophoretic force (DEP force). In general, the DEP force generated by the designed electrodes is analyzed by the computer simulation that employs the finite element analysis method. However, it does not always calculate the correct DEP force. Therefore, we propose the method of measuring the DEP force accurately based on the null method. The experiment is conducted with the dielectrophoretic device (DEP device) in which microfabricated electrodes were formed and which contains the polystyrene particles exhibiting the negative DEP in distilled water in a non-uniform electric field. The displacement of the particle reaches a steady state 15 min. after the change of applied voltage v, angle θ or frequency f. The equilibrium state of the particle in a non-uniform electric field can be reached at any place by adjusting both of angles θ and φ, where θ is the "Pitch" angle and φ the "Yaw" angle for the device. The proposed method can measure the incredibly minute DEP force ranging from 25 fN (femto-Newton) at θ=5° to 298 fN at θ=90°, the accuracy of which is determined by the static friction and rolling friction between particles and the inner floor of the DEP device.
机译:介电泳(DEP)是物质在非均匀电场中由极化效应引起的运动。近来,在各种医学领域,包括对生物细胞的分离和表征,都对DEP进行了研究。测量这种原动力非常重要,但并不容易,这就是所谓的介电泳力(DEP力)。通常,由设计电极产生的DEP力是通过采用有限元分析方法的计算机仿真来分析的。但是,它并不总是能计算出正确的DEP力。因此,我们提出了一种基于零值法的精确测量DEP力的方法。用介电泳设备(DEP设备)进行实验,在该设备中形成了微型电极,并且该电极包含在非均匀电场中在蒸馏水中表现出负DEP的聚苯乙烯颗粒。粒子的位移达到稳定状态15分钟。在施加电压v,角度θ或频率f变化之后。通过调整角度θ和φ,可以在任何位置达到粒子在非均匀电场中的平衡状态,其中θ是设备的“俯仰”角,而φ是“偏转”角。所提出的方法可以测量范围从θ= 5°的25 fN(飞牛-牛顿)到θ= 90°的298 fN的微小DEP力,其精确度取决于颗粒与颗粒之间的静摩擦和滚动摩擦。 DEP设备的内层。

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