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Fluorescent polymer coated capillaries as optofluidic refractometric sensors

机译:荧光聚合物涂层毛细管作为光流控折射率传感器

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摘要

A capillary microresonator platform for refractometric sensing is demonstrated by coating the interior of thick-walled silica capillaries with a sub-wavelength layer of high refractive index, dye-doped polymer. No intermediate processing, such as etching or tapering, of the capillary is required. Side illumination and detection of the polymer layer reveals a fluorescence spectrum that is periodically modulated by whispering gallery mode resonances within the layer. Using a Fourier technique to calculate the spectral resonance shifts, the fabricated capillary resonators exhibited refractometric sensitivities up to approximately 30 nm/RIU upon flowing aqueous glucose through them. These sensors could be readily integrated with existing biological and chemical separation platforms such as capillary electrophoresis and gas chromatography where such thick walled capillaries are routinely used with polymer coatings. A review of the modelling required to calculate whispering gallery eigenmodes of such inverted cylindrical resonators is also presented.
机译:通过用高折射率,染料掺杂的聚合物的亚波长层覆盖厚壁二氧化硅毛细管的内部,证明了用于折光检测的毛细管微谐振器平台。不需要毛细管的中间处理,例如蚀刻或逐渐变细。聚合物层的侧面照明和检测显示出一个荧光光谱,该光谱被层内的回音壁模式共振周期性地调制。使用傅立叶技术计算光谱共振位移,所制造的毛细管共振器在使葡萄糖水溶液流过它们时显示出高达约30 nm / RIU的折光率灵敏度。这些传感器可以很容易地与现有的生物和化学分离平台集成在一起,例如毛细管电泳和气相色谱法,这些壁厚的毛细管通常与聚合物涂层一起使用。还介绍了对计算这种倒置圆柱谐振器的回音壁本征模所需的建模的综述。

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