Healy Bronach, Yu Tian, C da Silva Alves Daniele, Okeke Cynthia, Breslin Carmel B
Department of Chemistry, Maynooth University, Maynooth, Co. Kildare, Ireland.
School of Chemistry and Food, Federal University of Rio Grande, Rio Grande 90040-060, Brazil.
Materials (Basel). 2021 Mar 28;14(7):1668. doi: 10.3390/ma14071668.
Supramolecular chemistry, although focused mainly on noncovalent intermolecular and intramolecular interactions, which are considerably weaker than covalent interactions, can be employed to fabricate sensors with a remarkable affinity for a target analyte. In this review the development of cyclodextrin-based electrochemical sensors is described and discussed. Following a short introduction to the general properties of cyclodextrins and their ability to form inclusion complexes, the cyclodextrin-based sensors are introduced. This includes the combination of cyclodextrins with reduced graphene oxide, carbon nanotubes, conducting polymers, enzymes and aptamers, and electropolymerized cyclodextrin films. The applications of these materials as chiral recognition agents and biosensors and in the electrochemical detection of environmental contaminants, biomolecules and amino acids, drugs and flavonoids are reviewed and compared. Based on the papers reviewed, it is clear that cyclodextrins are promising molecular recognition agents in the creation of electrochemical sensors, chiral sensors, and biosensors. Moreover, they have been combined with a host of materials to enhance the detection of the target analytes. Nevertheless, challenges remain, including the development of more robust methods for the integration of cyclodextrins into the sensing unit.
超分子化学虽然主要关注非共价分子间和分子内相互作用(这些相互作用比共价相互作用弱得多),但可用于制造对目标分析物具有显著亲和力的传感器。在这篇综述中,描述并讨论了基于环糊精的电化学传感器的发展。在简要介绍环糊精的一般性质及其形成包合物的能力之后,引入了基于环糊精的传感器。这包括环糊精与还原氧化石墨烯、碳纳米管、导电聚合物、酶和适体的组合,以及电聚合环糊精薄膜。综述并比较了这些材料作为手性识别剂和生物传感器以及在环境污染物、生物分子和氨基酸、药物和类黄酮的电化学检测中的应用。基于所综述的论文,很明显环糊精在创建电化学传感器、手性传感器和生物传感器方面是有前途的分子识别剂。此外,它们已与多种材料结合以增强对目标分析物的检测。然而,挑战仍然存在,包括开发更稳健的方法将环糊精整合到传感单元中。