首页> 外文会议>ASME international conference on nanochannels, microchannels and minichannels >OBSERVATION OF CONTACT LINE DYNAMICS IN EVAPORATING DROPLETS UNDER THE INFLUENCE OF ELECTRIC FIELDS
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OBSERVATION OF CONTACT LINE DYNAMICS IN EVAPORATING DROPLETS UNDER THE INFLUENCE OF ELECTRIC FIELDS

机译:电场作用下蒸发液滴接触线动力学的观察

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Deposition of colloidal material in evaporating droplets is important in many applications including DNA sequencing and medical diagnostic testing. When colloidal droplets evaporate, the majority of material is often deposited at the periphery of the resultant deposition in a coffee-ring pattern. Formation of this pattern is the result of contact line pinning and the interplay between evaporative and surface tension effects in the droplet. When the contact line is pinned and the evaporative flux in the droplet is highest at the periphery, a radially outward flow is generated to conserve mass that deposits particles in the fluid at the contact line. Evaporation at the contact line can also create a temperature gradient across the droplet. This gradient gives rise to a surface tension driven flow that can resuspend particles in the droplet. When the evaporative flow dominates, particles are deposited at the contact line in a coffee-ring pattern. The presence of the coffee-ring pattern is undesirable in many printing and medical diagnostic processes. Suppression of the coffee-ring effect has been achieved by addition of surfactant, enhancement of surface tension flow, surface modification, alteration of particle shape, and application of an electric field. Manipulation of the coffee-ring effect has been achieved through the application of both AC and DC electric fields. One result of the presence of this field is the electrowetting force at the contact line which acts to reduce the contact angle and increase contact area. Since this force acts at the contact line, it may disrupt typical contact line dynamics, including evaporative dynamics, which are responsible for the formation of the coffee-ring effect. This work will experimentally examine contact line dynamics of evaporating droplets in the presence of DC electric fields. Droplets of water will be desiccated on a device with a photolithographically patterned electrode covered with a thin layer of SU8-3005. Experimental cases with applied DC fields will be compared with unactuated control cases to examine changes in transient interface shape and contact diameter.
机译:在许多应用中,包括在DNA测序和医学诊断测试中,在蒸发液滴中沉积胶体材料很重要。当胶体液滴蒸发时,大多数材料通常以咖啡环的形式沉积在所得沉积物的外围。这种图案的形成是接触线钉扎以及液滴中蒸发和表面张力效应之间相互作用的结果。当接触线被钉住并且液滴中的蒸发通量在外围最高时,会产生径向向外的流动,以保留将微粒沉积在接触线处的流体中的质量。接触线处的蒸发也会在液滴上产生温度梯度。该梯度引起表面张力驱动的流动,该流动可以将颗粒重悬在液滴中。当蒸发流占优势时,颗粒会以咖啡环的形式沉积在接触线处。在许多印刷和医学诊断过程中,咖啡环图案的存在是不希望的。通过添加表面活性剂,增强表面张力流动,表面改性,改变颗粒形状以及施加电场,已经实现了咖啡环效果的抑制。通过同时施加交流和直流电场,可以实现对咖啡环效果的控制。该场的存在的结果是在接触线上的电润湿力,该电润湿力用于减小接触角并增加接触面积。由于此力作用在接触线上,因此可能会破坏典型的接触线动力学(包括蒸发动力学),这是形成咖啡环效果的原因。这项工作将通过实验检查存在直流电场的情况下蒸发液滴的接触线动力学。水滴将在带有经光刻图案化的电极覆盖着SU8-3005薄层的设备上干燥。施加直流场的实验案例将与未激活的控制案例进行比较,以检查瞬态界面形状和接触直径的变化。

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