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首页> 外文期刊>ACS Omega >Silver Nanowire-Induced Sensitivity Enhancement of Optical Oxygen Sensors Based on AgNWs–Palladium Octaethylporphine–Poly(methyl methacrylate) Microfiber Mats Prepared by Electrospinning
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Silver Nanowire-Induced Sensitivity Enhancement of Optical Oxygen Sensors Based on AgNWs–Palladium Octaethylporphine–Poly(methyl methacrylate) Microfiber Mats Prepared by Electrospinning

机译:基于AgNWs-八乙基卟啉钯-聚(甲基丙烯酸甲酯)微纤维毡的静电纺丝法制备的银纳米线诱导的光氧传感器的灵敏度增强

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摘要

Sensitivity enhancement of optical oxygen sensors is crucial for the characterization of nearly anoxic systems and oxygen quantification in trace amounts. In this work, for the first time we presented the introduction of silver nanowires (AgNWs) as a sensitivity booster for optical oxygen sensors based on AgNWs–palladium octaethylporphine–poly(methyl methacrylate) (AgNWs@PdOEP–PMMA) microfiber mats prepared by electrospinning. Herein, a series of sensing microfiber mats with different loading ratios of high aspect ratio AgNWs were fabricated, and the corresponding sensitivity enhancement was systematically investigated. With increasing incorporated ratios, the AgNWs@PdOEP–PMMA-sensing microfiber mats exhibited a swift response (approx. 1.8 s) and a dramatic sensitivity enhancement (by 243% for the range of oxygen concentration 0?10% and 235% for the range of oxygen concentration 0–100%) when compared to the pure PdOEP–PMMA microfiber mat. Additionally, the as-prepared sensing films were experimentally confirmed to be highly photostable and reproducible. The advantages of AgNW-induced sensitivity enhancement could be useful for the rational design and realization of revolutionary highly sensitive sensors and expected to be readily applicable to many other high-performance gas sensor devices.
机译:光学氧气传感器的灵敏度增强对于近缺氧系统的表征和痕量氧气定量至关重要。在这项工作中,我们首次介绍了银纳米线(AgNWs)的引入,它是基于AgNWs-八乙基卟啉钯-聚甲基丙烯酸甲酯(AgNWs @ PdOEP-PMMA)微纤维垫的光学氧传感器的灵敏度增强剂,通过电纺丝制备。在此,制造了一系列具有不同长宽比的AgNWs的不同加载比的传感超细纤维垫,并系统地研究了相应的灵敏度提高。随着掺入比例的增加,AgNWs @ PdOEP-PMMA感测超细纤维毡表现出快速的响应(约1.8 s)和显着的灵敏度提高(对于氧浓度0?10%范围,提高了243%,对于氧浓度范围,提高了235%)与纯PdOEP-PMMA超细纤维毡相比,氧气浓度为0-100%)。另外,通过实验证实了所制备的传感膜是高度光稳定的和可再现的。 AgNW引起的灵敏度增强的优势可能对革命性的高灵敏度传感器的合理设计和实现有用,并且有望容易地应用于许多其他高性能气体传感器设备。

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