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Micromachined Fused Silica Liquid Core Waveguide Capillary Flow Cell

机译:微加工熔融石英液芯波导毛细管流动池

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摘要

A planar, chip-based flow cell for UV-vis absorbance detection in HPLC is presented. The device features a microfabricated free-standing liquid core waveguide (LCW) capillary detection tube of long path length that is based on total internal reflection. We report on the linearity and calibration slope characteristics of lithographically produced LCWs with different interior/exterior geometries. 3D ray tracing was indispensable in modeling behavior in the more demanding geometries: multipath behavior may be intrinsic to these waveguides with consequent nonlinearity. Fortunately, nonlinearity in lithographically easy-to-produce waveguide geometries (such as with a flat, concave exterior and a round interior) is not as detrimental as might be initially expected. Experimental performance is predictably affected by the attainable surface quality of the LCW and efficient and reproducible coupling of the input light into the LCW.
机译:提出了一种基于芯片的平面流动池,用于在HPLC中检测UV-vis吸光度。该设备具有基于全内反射的长路径长度的微型自立式液体芯波导(LCW)毛细管检测管。我们报告了不同内部/外部几何形状的平版印刷LCW的线性和校准斜率特性。在更苛刻的几何形状中,3D射线追踪对于建模行为是必不可少的:多路径行为可能是这些波导固有的特性,因此具有非线性。幸运的是,光刻易于生产的波导几何形状(例如具有平坦,凹入的外部和圆形的内部)中的非线性并不像最初预期的那样有害。可以预期,LCW的表面质量以及输入光到LCW的有效且可再现的耦合会影响实验性能。

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