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首页> 外文期刊>ACS nano >Ultrasensitive Gas-Phase Chemical Sensing Based on Functionalized Photonic Crystal Nanobeam Cavities
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Ultrasensitive Gas-Phase Chemical Sensing Based on Functionalized Photonic Crystal Nanobeam Cavities

机译:基于功能化光子晶体纳米束腔的超灵敏气相化学传感

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摘要

Photonic crystal nanobeam cavities with high-quality factors are very sensitive to the changes of the dielectric properties of their surroundings. Utilizing this high sensitivity and by applying chemical functionalization, an ultrasensitive chemical sensor for gases based on a nanobeam cavity was demonstrated. A limit of detection of 1.5 parts-per-billion (ppb) in ambient conditions, determined from the noise level of the system, was achieved for nerve agent simulant methyl salicylate. The nanobeam cavity's nonlinear thermo-optical bistability is also utilized to realize a threshold detector for cumulative chemical exposure.
机译:具有高品质因数的光子晶体纳米束腔体对其周围介电特性的变化非常敏感。利用这种高灵敏度并通过应用化学功能化,展示了一种基于纳米束腔的气体超灵敏化​​学传感器。根据神经系统模拟剂水杨酸甲酯的测定,在环境条件下检测限为1.5十亿分之一(ppb)。纳米束腔的非线性热光学双稳态也被用来实现用于累积化学暴露的阈值检测器。

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