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利用穴状配体进行环境气体传感

Environmental Gas Sensing with Cavitands.

作者信息

Pinalli Roberta, Pedrini Alessandro, Dalcanale Enrico

机构信息

Department of Chemistry, Life Science and Environmental Sustainability, University of Parma, Parco Area delle Scienze 17/A, 43124, Parma, Italy.

出版信息

Chemistry. 2018 Jan 24;24(5):1010-1019. doi: 10.1002/chem.201703630. Epub 2017 Oct 26.

Abstract

Environmental gas sensing needs stringent sensor requirements in terms of sensitivity, selectivity and ruggedness. One of the major issues to be addressed is combining in a single device the conflicting requirements of molecular-level selectivity and low-ppb sensitivity. The exploitation of synthetic molecular receptors as sensing materials is particularly attractive to address the selectivity issue, to single out the desired analytes in the presence of overwhelming amounts of interferents. This minireview summarizes the strategies in environmental gas and vapor sensing using molecular receptors as selective hosts for specific analytes, with the main focus on cavitands. In particular, we highlight the use of these macrocycles as selective preconcentrator units to be integrated into portable devices for environmental monitoring. Depending on the class of analytes to be detected, the molecular recognition properties of cavitands can be manipulated through the proper choice of the bridging groups at the upper rim, and their transducer integration can be implemented through the manifold functionalization options at the lower rim.

摘要

环境气体传感在灵敏度、选择性和耐用性方面需要严格的传感器要求。需要解决的主要问题之一是在单个设备中结合分子水平选择性和低 ppb 灵敏度这两个相互冲突的要求。利用合成分子受体作为传感材料来解决选择性问题,即在存在大量干扰物的情况下挑选出所需的分析物,特别具有吸引力。本综述总结了使用分子受体作为特定分析物的选择性主体进行环境气体和蒸汽传感的策略,主要关注穴状配体。特别是,我们强调了将这些大环用作选择性预浓缩单元,以集成到用于环境监测的便携式设备中。根据要检测的分析物类别,可以通过在上边缘适当选择桥连基团来操纵穴状配体的分子识别特性,并且可以通过在下边缘的多种功能化选项来实现它们与换能器的集成。

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