Birck Nanotechnology Center and School of Mechanical Engineering, Purdue University, West Lafayette, Indiana 47907, USA.
Langmuir. 2010 Jun 1;26(11):7656-60. doi: 10.1021/la100614h.
We demonstrate a new hybrid optoelectric technique that can manipulate objects across several length scales. The technique leverages a variety of different physical mechanisms to achieve the dynamic manipulation of droplets and also the in situ concentration of colloidal particles suspended in the droplets. Various physical mechanisms such as optoelectrowetting, electrothermal flows, and ac electroosmosis are leveraged through different modes of operation of the device. Each operational mode, which is activated through the proper combination of an applied ac bias and the illumination used, is characterized by the ability to manipulate objects on a certain length scale. We also demonstrate that the device lends itself to the active control of microstructure patterns that emerge from a droplet evaporation process.
我们展示了一种新的光电混合技术,该技术可以跨多个长度尺度操纵物体。该技术利用多种不同的物理机制来实现液滴的动态操纵以及悬浮在液滴中的胶体颗粒的原位浓缩。通过设备的不同操作模式来利用各种物理机制,例如光电润湿、电热流和交流电渗。每种操作模式,通过适当组合施加的交流偏压和使用的照明来激活,其特点是能够在特定的长度尺度上操纵物体。我们还证明,该设备可以有效地控制从液滴蒸发过程中出现的微结构图案。