首页> 外文期刊>Photonics Technology Letters, IEEE >Optofluidic Waveguides in Teflon AF-Coated PDMS Microfluidic Channels
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Optofluidic Waveguides in Teflon AF-Coated PDMS Microfluidic Channels

机译:铁氟龙AF涂层PDMS微流体通道中的光导波导

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摘要

We report a new method for fabricating an optofluidic waveguide that is compatible with polydimethylsiloxane (PDMS). The light path follows the microfluidic channels, an architecture that can maximize detection efficiency and make the most economic use of chip area in many lab-on-chip applications. The PDMS-based microfluidic channels are coated with Teflon amorphous fluoropolymers (Teflon AF) which has a lower refractive index (n = 1.31) than water (n = 1.33) to form a water/Teflon AF optical waveguide. Driven by a vacuum pump, the Teflon AF solution was flowed through the channels, leaving a thin (5-15 mum) layer of coating on the channel wall as the cladding layer of optical waveguides. This coating process resolves the limitations of spin-coating processes by reducing the elasticity mismatch between the Teflon AF cladding layer and the PDMS device body. We demonstrate that the resulting optofluidic waveguide confines and guides the laser light through the liquid core channel. Furthermore, the light in such a waveguide can be split when the fluid flow is split. This new method enables highly integrated biosensors such as lab-on-chip flow cytometers and micro-fabricated fluorescence-activated cell sorter with on-chip excitation.
机译:我们报告了一种新的方法来制造与聚二甲基硅氧烷(PDMS)兼容的光流体波导。光路遵循微流体通道,该体系结构可以使检测效率最大化,并在许多芯片实验室应用中最经济地利用芯片面积。基于PDMS的微流体通道涂有比水(n = 1.33)低的折射率(n = 1.31)的Teflon无定形含氟聚合物(Teflon AF),以形成水/ Teflon AF光波导。在真空泵的驱动下,Teflon AF溶液流经通道,在通道壁上留下一层薄薄的涂层(5-15微米)作为光波导的包层。通过减少Teflon AF包层和PDMS器件主体之间的弹性不匹配,该涂覆过程解决了旋涂过程的局限性。我们证明了所产生的光流体波导会限制并引导激光穿过液芯通道。此外,当流体流被分开时,这种波导中的光可以被分开。这种新方法可实现高度集成的生物传感器,例如带有芯片激励的芯片实验室流式细胞仪和微型荧光激活细胞分选仪。

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