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Integrated polymer waveguides for absorbance detection in chemical analysis systems

机译:用于化学分析系统中吸光度检测的集成聚合物波导

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摘要

A chemical analysis system for absorbance detection with integrated polymer waveguides is reported for the first time. The fabrication procedure relies on structuring of a single layer of the photoresist SU-8, so both the microfluidic channel network and the optical components, which include planar waveguides and fiber-to-waveguide coupler structures, are defined in the same processing step. This results in self-alignment of all components and enables a fabrication and packaging time of only one day. The fabrication scheme has recently been presented elsewhere for fluorescence excitation of beads. The emphasis of this paper is on the signal-to-noise ratio of the detection and its relation to the sensitivity. Two absorbance cells with an optical path length of 100 μm and 1000 μm were characterized and compared in terms of sensitivity, limit of detection and effective path length for measurements of the dye Bromothymol Blue. The influence of three different bonding procedures on the spectrally resolved propagation loss of the integrated waveguides between 500 nm and 900 nm was furthermore determined.
机译:首次报道了使用集成聚合物波导进行吸光度检测的化学分析系统。制造过程依赖于光致抗蚀剂SU-8的单层结构,因此在同一处理步骤中定义了微流体通道网络和光学组件,其中包括平面波导和光纤到波导耦合器结构。这导致所有组件的自动对准,并且制造和包装时间仅为一天。最近在其他地方提出了制造方案,用于珠的荧光激发。本文的重点是检测的信噪比及其与灵敏度的关系。对两个光学路径长度分别为100μm和1000μm的吸收池进行了表征,并根据灵敏度,检测极限和用于测量溴溴百里酚蓝的有效路径长度进行了比较。此外,确定了三种不同的键合程序对集成波导在500 nm至900 nm之间的光谱分辨传播损耗的影响。

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