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首页> 外文期刊>Analytical chemistry >Sensor for Fluorene Based on the Incorporation of an Environmentally Sensitive Fluorophore Proximal to a Molecularly Imprinted Binding Site
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Sensor for Fluorene Based on the Incorporation of an Environmentally Sensitive Fluorophore Proximal to a Molecularly Imprinted Binding Site

机译:基于将环境敏感的荧光基团引入分子印迹结合位点的芴传感器

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摘要

A fluorescence-based chemical sensor for fluorene was created by molecularly imprinting a sol-gel comprising the bridged silsesquioxane, bis(trimethoxysilylethyl)benzene. The template was covalently bound to the sol-gel matrix using a fluorene analogue functionalized silane. After chemical removal of template via cleavage of a carbamate linkage, an amine group was left that provided an attachment site for the environmentally sensitive fluorescent probe 7-nitrobenz-2-oxa-1,3-diazole (NBD). Fluorene binding was detected by a change in NBD fluorescence intensity induced by a difference in the local polarity around the probe when the recognition site is filled. Such an approach eliminated response to nonspecific binding to the matrix. Sensing films deposited on glass slides were shown to have response times of <60 s and detection limits below 10 parts-per-trillion. Binding experiments demonstrated that the materials had good selectivity for fluorene over close structural analogues including naphthalene, fluoranthene, and anthracene. However, the sensing design is limited by a lack of reversibility following fluorene binding.
机译:通过分子印迹包含桥联倍半硅氧烷,双(三甲氧基甲硅烷基乙基)苯的溶胶凝胶,创建了基于荧光的芴化学传感器。使用芴类似物官能化的硅烷将模板共价结合到溶胶-凝胶基质上。通过裂解氨基甲酸酯键化学去除模板后,留下了一个胺基,该胺基为环境敏感的荧光探针7-硝基苯-2-氧杂-1,3-二唑(NBD)提供了附着位点。通过填充识别位点时探针周围局部极性差异引起的NBD荧光强度变化来检测芴结合。这种方法消除了对非特异性结合至基质的反应。沉积在载玻片上的感测膜的响应时间小于60 s,检测极限低于10万亿分之一。结合实验表明,该材料对芴的选择性比对萘,荧蒽和蒽等紧密结构类似物高。然而,传感设计受到芴结合后缺乏可逆性的限制。

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