College of Chemistry and Life Science, Suzhou University of Science and Technology, Suzhou, China.
Crit Rev Anal Chem. 2024;54(6):1416-1429. doi: 10.1080/10408347.2022.2116555. Epub 2022 Aug 29.
Copper nanoclusters (CuNCs) as a new type of probe for environmental contaminants are gaining increasing attention because of its low cost, superior water dispersibility, wide availability and excellent optical properties. Compared with the other probes such as quantum dots and organic dyes, CuNCs show much more potential in practical application for their excellent photostability, large Stokes shift, low toxicity and other preponderance, especially in the fields of biosensing and environmental monitoring. Recently, the template-assisted synthesis of metal nanoclusters (MNCs) has been widely studied. A variety of templates such as proteins, small thiol molecules, polymers, and DNA with different spatial configuration have been used for the preparation of MNCs so far. This review primarily described recent advances in CuNCs in terms of the synthesis of CuNCs from different templates, the methods to improve the fluorescence (FL) properties of CuNCs, as well as the basic detection mechanisms based on the FL properties or catalytic properties. Finally, to promote the practical application of CuNCs probes, the challenges and prospects of CuNCs multifunctional probes are also discussed.
铜纳米团簇 (CuNCs) 作为一种新型的环境污染物探针,由于其成本低、良好的水分散性、广泛的可用性和优异的光学性质而受到越来越多的关注。与量子点和有机染料等其他探针相比,CuNCs 在实际应用中具有更大的潜力,因为其具有优异的光稳定性、大斯托克斯位移、低毒性和其他优势,尤其是在生物传感和环境监测领域。最近,模板辅助合成金属纳米团簇 (MNCs) 已得到广泛研究。迄今为止,已经使用了各种具有不同空间构象的模板,如蛋白质、小分子硫醇、聚合物和 DNA,用于制备 MNCs。本综述主要描述了不同模板合成 CuNCs 的最新进展、提高 CuNCs 荧光 (FL) 性质的方法以及基于 FL 性质或催化性质的基本检测机制。最后,为了促进 CuNCs 探针的实际应用,还讨论了 CuNCs 多功能探针的挑战和前景。