Lee Sin-Hyung, Lee In-Ho, Kim Jiyoon, Keum Chang-Min, Yu Eui-Sang, Lee Sin-Doo
J Nanosci Nanotechnol. 2016 Jun;16(6):6455-8. doi: 10.1166/jnn.2016.12126.
We demonstrated a new architecture of an electrowetting-on-dielectric (EWOD) device to transport a liquid droplet by the spatial modulation of an electric field produced using an embedded undulating electrode. The undulating electrode was constructed on an array of dielectric microstructures with different periods in region by region to generate a gradually varying lateral electric field. The contact angle of a droplet of water on the EWOD surface was found to decrease monotonically from 120 degrees to about 50 degrees with increasing the strength of the electric field. The transport of the water droplet was driven by the surface wettability gradient produced by means of the amplitude modulation of the electric field in space but not in time. Our EWOD configuration allows the flexibility in design, the simplicity in driving scheme, and the high accuracy in position for the liquid transport.
我们展示了一种新型的介电层上电润湿(EWOD)器件架构,该架构通过使用嵌入式起伏电极产生的电场的空间调制来传输液滴。起伏电极是在介电微结构阵列上逐区域构建的,各区域具有不同的周期,以产生逐渐变化的横向电场。研究发现,随着电场强度的增加,EWOD表面上水滴的接触角从120度单调下降至约50度。水滴的传输是由通过电场在空间而非时间上的幅度调制产生的表面润湿性梯度驱动的。我们的EWOD配置在液体传输的设计灵活性、驱动方案的简单性以及位置的高精度方面具有优势。