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Sensing chlorinated hydrocarbons via miniaturized GaAs/AlGaAs thin-film waveguide flow cells coupled to quantum cascade lasers

机译:通过与量子级联激光器耦合的小型化GaAs / AlGaAs薄膜波导流通池来检测氯代烃

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Mid-infrared (MIR) sensors based on attenuated total reflection (ATR) spectroscopy provide robust, rapid and sensitive platforms for the detection of low levels of organic molecules and pollutants. Nowadays, MIR (3–15 μm) spectroscopy has evolved into a versatile sensing technique providing inherent molecular selectivity for the detection of organic and inorganic molecules. The excitation of vibrational and rotational transitions enables the qualitative and quantitative analysis of molecular constituents in solid, liquid, and vapor phases, which facilitates the application of MIR chem/bio sensors for on-site environmental analysis in scenarios such as trace pollutant monitoring or spill detection. This report presents the first integration of thin-film gallium arsenide/aluminum gallium arsenide (GaAs/AlGaAs) into a miniaturized liquid flow cell designed for continuous trace analysis of chlorinated hydrocarbons (CHCs) in water coupled to a broadly tunable quantum cascade laser (QCL), which facilitates in-field deployment of QCL-based sensing devices ensuring water quality and water safety...
机译:基于衰减全反射(ATR)光谱的中红外(MIR)传感器为检测少量有机分子和污染物提供了强大,快速和灵敏的平台。如今,MIR(3–15μm)光谱已发展成为一种通用的传感技术,可为检测有机和无机分子提供固有的分子选择性。振动和旋转跃迁的激发可以对固相,液相和气相中的分子成分进行定性和定量分析,这有利于将MIR化学/生物传感器应用于现场环境分析中,例如痕量污染物监测或溢出检测。本报告介绍了将薄膜砷化镓/砷化铝镓(GaAs / AlGaAs)首次集成到小型化液体流通池中的设计,该流通池旨在对水中的氯代烃(CHC)进行连续痕量分析,并与宽可调量子级联激光器(QCL)结合使用),这有助于在现场部署基于QCL的传感设备,从而确保水质和水安全...

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