Advanced Manufacturing and Fabrication, School of Engineering, RMIT University, Melbourne, VIC, 3000, Australia.
Mikrochim Acta. 2020 May 19;187(6):336. doi: 10.1007/s00604-020-04297-5.
Heavy metal contamination is a major global concern and additive toxicity resulting from the exposure to multiple heavy metal ions is more pronounced than that induced by a single metal species. Quantum dots (QDs) have demonstrated unique properties as sensing materials for heavy metal ions over the past two decades. With the rapid development and deep understanding on determination of single heavy metal ion using QD probes, this technology has been employed for sensing multiple metal ions. This review (with 97 refs.) summarizes the progress made in recent years in methods for multiplexed determination of heavy metal ions using QDs. Following an introduction into the importance of simultaneous quantitation of multiple heavy metal ions in environmentally relevant settings, the review discusses the applications of different types of QDs, i.e. chalcogenide, carbon, polymer and graphene in this field. Determination strategies based on fluorometric, colorimetric and electrochemical responses were reviewed including the testing mechanisms and differentiation between various metal ions. In addition, current state of the art sensor constructions, i.e. immobilization of QDs on solid substrate and sensor arrays have been highlighted. A concluding section describes the limitations, opportunities and future challenges of the QD probes. We also compiled a comprehensive table of currently available literature. The listed papers provided information in the following categories, i.e. type of QDs used, ligands or other components in the probe, metal ions tested, medium/substrate of the probe, transduction methods, discrimination mechanism, limit of detection (LOD) and concentration range. Graphic abstract.
重金属污染是一个全球性的重大问题,与单一金属物种相比,暴露于多种重金属离子会导致更明显的附加毒性。在过去的二十年中,量子点 (QD) 已被证明是重金属离子传感材料的独特特性。随着对使用 QD 探针测定单一重金属离子的快速发展和深入理解,该技术已被用于感测多种金属离子。
本综述(引用了 97 篇参考文献)总结了近年来使用 QD 进行多重重金属离子同时定量的方法进展。在介绍了在环境相关环境中同时定量多种重金属离子的重要性之后,本文讨论了不同类型的 QD(即硫属化物、碳、聚合物和石墨烯)在该领域的应用。综述了基于荧光、比色和电化学响应的测定策略,包括测试机制和各种金属离子的区分。此外,还突出了当前的传感器结构,即 QD 在固体基底上的固定化和传感器阵列。
最后一节描述了 QD 探针的局限性、机遇和未来挑战。我们还编制了一个全面的现有文献表。列出的论文提供了以下几类信息,即使用的 QD 类型、探针中的配体或其他成分、测试的金属离子、探针的介质/基底、转换方法、鉴别机制、检测限 (LOD) 和浓度范围。