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基于液晶微流的光流控可调谐彩色滤光片和光谱学

Optofluidic-tunable color filters and spectroscopy based on liquid-crystal microflows.

机构信息

Optics Laboratory, School of Engineering, École Polytechnique Fédérale de Lausanne (EPFL), Switzerland.

出版信息

Lab Chip. 2013 Jul 21;13(14):2721-6. doi: 10.1039/c3lc50501d.

Abstract

The integration of color filters with microfluidics has attracted substantial attention in recent years, for on-chip absorption, fluorescence, or Raman analysis. We describe such tunable filters based on the micro-flow of liquid crystals. The filter operation is based on the wavelength-dependent liquid crystal birefringence that can be tuned by modifying the flow velocity field in the microchannel. The latter is possible both temporally and spatially by varying the inlet pressure and the channel geometry, respectively. We explored the use of these optofluidic filters for on-chip absorption spectroscopy in poly(dimethylsiloxane) microfluidic systems; by integrating the distance-dependent color filter with a dye-filled micro-channel, the absorption spectrum of a dye could be measured. Liquid crystal microflows substantially simplify the optofluidic integration, actuation and tuning of color filters for lab-on-a-chip spectroscopic applications.

摘要

近年来,将彩色滤光片与微流控技术相结合引起了广泛关注,可用于芯片上的吸收、荧光或拉曼分析。我们描述了基于液晶微流动的这种可调谐滤波器。滤波器的工作原理基于波长相关的液晶双折射,通过改变微通道中的流速场可以对其进行调节。通过分别改变入口压力和通道几何形状,可以在时间和空间上实现这种流速场的改变。我们探索了将这些光流控滤波器用于聚二甲基硅氧烷(PDMS)微流控系统中的芯片上吸收光谱学;通过将距离相关的彩色滤光片与填充有染料的微通道集成,可以测量染料的吸收光谱。液晶微流极大地简化了用于芯片实验室光谱应用的光流控彩色滤波器的集成、驱动和调谐。

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