利用SiO2/聚合物纳米多孔薄膜制备高效光纤气体传感器

S. Kodaira, S. Korposh, Seung-Woo Lee, W. Batty, S. James, R. Tatam
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引用次数: 14

摘要

为了研制光纤气体传感器,在光纤表面沉积了一层多孔纳米薄膜。该薄膜采用静电自组装工艺,由40 ~ 50 nm直径的聚二烯基二甲基氯化铵(PDDA)和二氧化硅纳米颗粒交替沉积而成。作为制备的最后一步,在涂层中注入功能化合物四-(4-巯基)卟啉(TSPP)。将这种材料暴露在氨中会引起吸收光谱的变化,这可以在涂层光纤的透射光谱中观察到。该传感器在0.1 ~ 50ppm的浓度范围内具有良好的线性灵敏度,传感器的响应和恢复在5min以内。为了研究传感器的选择性,将传感器暴露于不同的化合物中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fabrication of highly efficient fibre-optic gas sensors using SiO2/polymer nanoporous thin films
A highly porous nano-thin film has been deposited on the optical fibre with the aim to develop a fibre-optic gas sensor. The film was composed of alternate layers of poly(diallyldimethyl ammonium chloride) (PDDA) and silica nanoparticles of 40-50 nm in diameter deposited using the electrostatic self assembly process. As a final step of preparation, the coating was infused with the functional compound of tetrakis-(4-sulfophenyl) porphine (TSPP). Exposure of this material to ammonia induces a change in the absorption spectrum, which can be observed in the transmission spectrum of the coated optical fibre. The ammonia sensor shows a linear sensitivity in the concentration range of 0.1-50 ppm and the sensor response and recovery were within 5 min. The sensor was exposed to different chemical compounds in order to study the sensors selectivity.
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