Lee Seung-Kon, Yi Gi-Ra, Yang Seung-Man
Centre for Integrated Optofluidic Systems and Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology, Daejeon, 305-701, Korea.
Lab Chip. 2006 Sep;6(9):1171-7. doi: 10.1039/b606448e. Epub 2006 Jun 23.
In this paper, we report a rapid and facile method for fabricating colloidal photonic crystals inside microchannels of radially symmetric microfluidic chips which were made using soft-lithography. As the suspension of monodisperse silica or polystyrene latex spheres was driven to flow through the channels under the action of centrifugal force, the colloidal spheres were quickly assembled into face centered cubic arrangement which had a few photonic stop bands. The soft-microfluidic channels and cells confined the colloidal crystals into designed patterns. The optical reflectance was modulated by the refractive-index mismatch between the colloidal particles and the solvent in the interstices between the particles. Therefore, the present microfluidic chips with built-in colloidal photonic crystals can be used as in-situ optofluidic microsensors for high throughput screening or light filters in integrated adaptive optical devices.
在本文中,我们报道了一种快速简便的方法,用于在通过软光刻制造的径向对称微流控芯片的微通道内制备胶体光子晶体。当单分散二氧化硅或聚苯乙烯乳胶球的悬浮液在离心力作用下被驱动通过通道时,胶体球迅速组装成具有几个光子禁带的面心立方排列。软微流控通道和单元将胶体晶体限制在设计图案中。光学反射率由胶体颗粒与颗粒间间隙中溶剂之间的折射率失配调制。因此,这种内置胶体光子晶体的微流控芯片可作为原位光流体微传感器用于高通量筛选,或作为集成自适应光学器件中的滤光器。