Veríssimo Marta I S, Evtuguin Dmitry V, Gomes M Teresa S R
CESAM, Department of Chemistry, University of Aveiro, Aveiro, Portugal.
CICECO, Department of Chemistry, University of Aveiro, Aveiro, Portugal.
Front Chem. 2022 Mar 8;10:840657. doi: 10.3389/fchem.2022.840657. eCollection 2022.
Polyoxometalates (POMs) are a class of metal oxide complexes with a large structural diversity. Effective control of the final chemical and physical properties of POMs could be provided by fine-tuning chemical modifications, such as the inclusion of other metals or non-metal ions. In addition, the nature and type of the counterion can also impact POM properties, like solubility. Besides, POMs may combine with carbon materials as graphene oxide, reduced graphene oxide or carbon nanotubes to enhance electronic conductivity, with noble metal nanoparticles to increase catalytic and functional sites, be introduced into metal-organic frameworks to increase surface area and expose more active sites, and embedded into conducting polymers. The possibility to design POMs to match properties adequate for specific sensing applications turns them into highly desirable chemicals for sensor sensitive layers. This review intends to provide an overview of POM structures used in sensors (electrochemical, optical, and piezoelectric), highlighting their main functional features. Furthermore, this review aims to summarize the reported applications of POMs in sensors for detecting and determining analytes in different matrices, many of them with biochemical and clinical relevance, along with analytical figures of merit and main virtues and problems of such devices. Special emphasis is given to the stability of POMs sensitive layers, detection limits, selectivity, the pH working range and throughput.
多金属氧酸盐(POMs)是一类结构多样性很大的金属氧化物配合物。通过微调化学修饰,如引入其他金属或非金属离子,可以有效控制POMs的最终化学和物理性质。此外,抗衡离子的性质和类型也会影响POMs的性质,如溶解度。此外,POMs可以与氧化石墨烯、还原氧化石墨烯或碳纳米管等碳材料结合以提高电子导电性,与贵金属纳米颗粒结合以增加催化和功能位点,被引入金属有机框架以增加表面积并暴露更多活性位点,以及嵌入导电聚合物中。设计POMs以使其性质适合特定传感应用的可能性,使它们成为传感器敏感层非常理想的化学品。本综述旨在概述用于传感器(电化学、光学和压电)的POM结构,突出其主要功能特性。此外,本综述旨在总结POMs在检测和测定不同基质中分析物的传感器中的应用报道,其中许多具有生化和临床相关性,以及此类装置的分析性能指标和主要优点及问题。特别强调了POMs敏感层的稳定性、检测限、选择性、pH工作范围和通量。