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首页> 外文期刊>Lab on a chip >Reconfigurable liquid pumping in electric-field-defined virtual microchannels by dielectrophoresis
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Reconfigurable liquid pumping in electric-field-defined virtual microchannels by dielectrophoresis

机译:介电电泳法在电场定义的虚拟微通道中进行可重构液体泵送

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摘要

Dielectrophoresis (DEP), widely used to generate body forces on suspended particles, is investigated to provide surface forces at the liquid-medium interfaces and pump a high-permittivity liquid in a low-permittivity medium along a virtual microchannel defined by an electric field between parallel plates. Because the pumping pressure is proportional to the square of the intensity of the electric field and independent of the channel width, DEP pumping is advantageous as the dimension of the microchannel shrinks down. The absence of the channel walls simplifies the fabrication processes and further increases its feasibility in nanofiuidic applications. We demonstrate water pumping in an immiscible silicone oil medium at adjustable velocities by applying voltages above the threshold value whose square is linearly proportional to the cross-sectional aspect ratio (AR), i.e., the height to width ratio, of the microchannel. With a properly designed AR, liquid valve is achieved by appropriate voltage applications. Without the barriers of channel walls, merging multiple streams and capillary filling of the spacing between electric-field-defined virtual microchannels are observed and studied. Moreover, in situ reconfigurable liquid pumping is demonstrated by a four way switching valve on a programmable crossing electrode set.
机译:介电电泳(DEP)被广泛用于在悬浮粒子上产生体力,它被研究以在液-介质界面处提供表面力,并沿着由电场之间定义的虚拟微通道将低介电常数液体泵入高介电常数液体平行板。因为泵浦压力与电场强度的平方成正比,并且与通道宽度无关,所以DEP泵浦是有利的,因为微通道的尺寸会缩小。通道壁的缺乏简化了制造过程,并进一步增加了其在纳米流体应用中的可行性。我们通过施加高于阈值的电压来证明在不溶混的硅油介质中以不可调速的速度进行水泵抽运,该电压的平方与微通道的横截面纵横比(AR)(即高宽比)成线性比例。通过正确设计的AR,可以通过适当的电压应用来实现液体阀。在没有通道壁的障碍的情况下,观察并研究了合并多股流和毛细管填充电场定义的虚拟微通道之间的距离的问题。此外,通过可编程交叉电极组上的四通切换阀演示了现场可重构液体泵送。

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