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Microsystems for optical gas sensing incorporating the solvatochromic dye Nile Red

机译:包含溶剂变色染料尼罗红的光学气体传感微系统

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An optical gas sensor has been developed based on the fluorescence emission of the solvatochromic dye, Nile Red, immobilised within various polymers with different physical properties. Microsystems, made either in SU-8/glass or microstructure glass (MSG) substrates, were used to host the environmentally sensitive fluorescent dye within the polymer matrices. The MSG devices have been found to have superior sensitivity to analytes (up to seven times greater) and recovery times (up to 50% faster) than analogous structures made in SU-8. Measurement of the fluorescence at two separate wavelengths confirmed the ability of the MSG sensor array to produce a "fingerprint" response for separate analytes with a high degree of repeatability (the standard deviation of the average response to a given analyte was <1%). Used in conjunction with pattern recognition techniques, the arrays show potential for gas identification and discrimination.
机译:基于固溶染料尼罗红的荧光发射,开发了一种光学气体传感器,该染料固定在具有不同物理特性的各种聚合物中。以SU-8 /玻璃或微结构玻璃(MSG)基板制成的微系统用于将环境敏感的荧光染料容纳在聚合物基质中。与SU-8中制造的类似结构相比,已发现MSG器件对分析物具有更高的灵敏度(最高可达7倍)和恢复时间(最高可达50%)。在两个单独的波长下对荧光的测量证实了MSG传感器阵列具有能力以高重复性对单独的分析物产生“指纹”响应(对给定分析物的平均响应的标准偏差为<1%)。与模式识别技术结合使用,这些阵列显示出潜在的气体识别和识别能力。

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