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基于由功能化聚二甲基硅氧烷涂层修饰的长周期光纤光栅的化学传感器。

Chemical sensor based on a long-period fibre grating modified by a functionalized polydimethylsiloxane coating.

作者信息

Barnes Jack, Dreher Marian, Plett Krista, Brown R Stephen, Crudden Cathleen M, Loock Hans-Peter

机构信息

Department of Chemistry, Queen's University, Kingston, ON, Canada.

出版信息

Analyst. 2008 Nov;133(11):1541-9. doi: 10.1039/b806129g. Epub 2008 Sep 11.

Abstract

A chemical sensor based on a coated long-period grating has been prepared and characterized. Designer coatings based on polydimethylsiloxane were prepared by the incorporation of diphenylsiloxane and titanium cross-linker in order to provide enhanced sensitivity for a variety of key environmental pollutants and optimal refractive index of the coating. Upon microextraction of the analyte into the polymer matrix, an increase in the refractive index of the coating resulted in a change in the attenuation spectrum of the long-period grating. The grating was interrogated using ring-down detection as a means to amplify the optical loss and to gain stability against misalignment and power fluctuations. Chemical differentiation of cyclohexane and xylene was achieved and a detection limit of 300 ppm of xylene vapour was realized.

摘要

一种基于涂覆长周期光栅的化学传感器已制备并表征。通过掺入二苯基硅氧烷和钛交联剂制备了基于聚二甲基硅氧烷的设计涂层,以提高对各种关键环境污染物的灵敏度,并使涂层具有最佳折射率。在将分析物微萃取到聚合物基质中后,涂层折射率的增加导致长周期光栅衰减光谱的变化。使用衰荡检测对光栅进行询问,以放大光损耗并获得针对未对准和功率波动的稳定性。实现了环己烷和二甲苯的化学区分,并实现了300 ppm二甲苯蒸气的检测限。

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