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Silica Gel Coated Spherical Micro resonator for Ultra-High Sensitivity Detection of Ammonia Gas Concentration in Air

机译:硅胶涂层球形微谐振器用于超高灵敏度检测空气中的氨气浓度

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摘要

A silica gel coated microsphere resonator is proposed and experimentally demonstrated for measurements of ammonia (NH3) concentration in air with ultra-high sensitivity. The optical properties of the porous silica gel layer change when it is exposed to low (parts per million (ppm)) and even ultra-low (parts per billion (ppb)) concentrations of ammonia vapor, leading to a spectral shift of the WGM resonances in the transmission spectrum of the fiber taper. The experimentally demonstrated sensitivity of the proposed sensor to ammonia is estimated as 34.46 pm/ppm in the low ammonia concentrations range from 4 ppm to 30 ppm using an optical spectrum analyser (OSA), and as 800 pm/ppm in the ultra-low range of ammonia concentrations from 2.5 ppb to 12 ppb using the frequency detuning method, resulting in the lowest detection limit (by two orders of magnitude) reported to date equal to 0.16 ppb of ammonia in air. In addition, the sensor exhibits excellent selectivity to ammonia and very fast response and recovery times measured at 1.5 and 3.6 seconds, respectively. Other attractive features of the proposed sensor are its compact nature, simplicity of fabrication.
机译:提出了一种硅胶涂层的微球谐振器,并通过实验证明了该方法可超高灵敏度地测量空气中的氨(NH3)浓度。当多孔硅胶层暴露于低浓度(百万分之一(ppm))甚至超低浓度(十亿分之一(ppb))的氨气中时,其光学性能会发生变化,从而导致WGM的光谱偏移锥度在传输光谱中的共振。实验证明,使用光谱分析仪(OSA),在4至30 ppm的低氨浓度范围内,建议的传感器对氨的敏感度估计为34.46 pm / ppm,在超低范围内为800 pm / ppm使用频率失谐方法将氨浓度从2.5 ppb降至12 ppb,导致迄今为止报道的最低检测限(降低两个数量级)等于空气中氨的0.16 ppb。此外,该传感器对氨具有出色的选择性,并分别在1.5秒和3.6秒处测得非常快的响应和恢复时间。所提出的传感器的其他吸引人的特征是其紧凑的性质,制造的简单性。

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