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Metal ions optical sensing by semiconductor quantum dots

机译:半导体量子点对金属离子的光学传感

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Colloidal semiconductor nanocrystals or quantum dots (QDs) have been facilitating the development of sensitive fluorescence sensors over the past decade, due to their unique photophysical properties, versatile surface chemistry and ligand binding ability, and the possibility of the encapsulation in different materials or attachment to different functional materials, while retaining their native luminescence property. The optical metal ion chemosensors with high sensitivity and selectivity have been developed due to the importance of the metal ions' fundamental roles, possessed in a wide range of biological processes and the aquatic environment. This review addresses the different sensing strategies with chemically modified QD hybrid structures for the sensing of metal ions in aqueous solution or an in vivo environment, and discusses the photophysical mechanisms in the different sensor systems while comparing their detecting/sensing selectivity. The perspectives for the future potential developments in QD based optical sensing for metal ions are discussed.
机译:在过去的十年中,胶体半导体纳米晶体或量子点(QD)一直在促进灵敏荧光传感器的发展,这是因为它们具有独特的光物理特性,通用的表面化学和配体结合能力,并且有可能封装在不同的材料中或附着于不同的功能材料,同时保留其固有的发光特性。由于金属离子在多种生物过程和水生环境中所具有的基本作用的重要性,因此已开发出具有高灵敏度和选择性的光学金属离子化学传感器。这篇综述通过化学修饰的QD杂化结构解决了不同的传感策略,用于检测水溶液或体内环境中的金属离子,并讨论了不同传感器系统中的光物理机制,同时比较了它们的检测/传感选择性。讨论了基于QD的金属离子光学传感的未来潜在发展前景。

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