Department of Polymer Nano Science and Technology, Chonbuk National University, Jeonju, Jeonbuk, South Korea.
Lab Chip. 2013 Jan 7;13(1):100-5. doi: 10.1039/c2lc40953d. Epub 2012 Oct 23.
We report a dielectrically actuated liquid crystal (LC) pump. A small volume of LC forms a pillar-like droplet in a cylindrical hole which partially touches the bottom substrate with embedded interdigitated electrodes. By applying a voltage, the LC droplet can be largely stretched along the electrode direction by the generated dielectric force, which in turn exerts a pressure to displace a small volume of fluid on the opposite side of the chamber. Once the voltage is removed, the LC droplet returns to its initial state. The LC droplet with such a reciprocating movement behaves like a pump. In this work, the actuation mechanism of the LC pump is presented and the performance evaluated experimentally. Our LC pump has the following advantages: simple structure, easy fabrication, compact size, high precision, low power consumption, and relatively fast response time. It is promising for applications in lens actuators, biotechnology, drug delivery, and other lab-on-a-chip devices.
我们报告了一种介电驱动的液晶(LC)泵。少量的 LC 在圆柱孔中形成柱状液滴,该圆柱孔部分与底部基底接触,基底上嵌入了交错的电极。通过施加电压,LC 液滴可以在电极方向上被产生的介电力大大拉伸,这反过来又会施加压力,以在腔室的另一侧置换少量的流体。一旦电压被移除,LC 液滴就会回到初始状态。具有这种往复运动的 LC 液滴就像一个泵。在这项工作中,介绍了 LC 泵的致动机制,并通过实验评估了其性能。我们的 LC 泵具有以下优点:结构简单、易于制造、体积小巧、精度高、功耗低、响应时间相对较快。它有望应用于透镜驱动器、生物技术、药物输送和其他芯片实验室设备。