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Graphene Quantum Dots as Fluorescence Probes for Sensing Metal Ions: Synthesis and Applications

机译:石墨烯量子点作为传感金属离子的荧光探针:合成与应用

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This review focuses on the recent development of graphene quantum dots (GQDs) as fluorescence probes, including their synthesis and application in metal ions detection. Because of the quantum confinement and edge effects, GQDs have exhibited unusual optical and chemical properties. Recently, various studies have been performed to tune the fluorescent properties of graphene quantum dots through doping heteroatom to the pi-conjugated system or surface-functionalization. Herein, we summarize the fundamental optical properties of GQDs influenced by size/shape, zigzag site and defect density, which is of very importance for the development of novel nanodevices with novel properties. We then highlight the application of graphene quantum dot probes in fluorescent sensing of metal irons. We also discuss the current challenges and application prospects of fluorescent GQDs in metal ions sensor field.
机译:这篇综述集中在石墨烯量子点(GQDs)作为荧光探针的最新发展,包括它们的合成和在金属离子检测中的应用。由于量子限制和边缘效应,GQD表现出不同寻常的光学和化学性质。近来,已经进行了各种研究以通过将杂原子掺杂至π-共轭体系或表面官能化来调节石墨烯量子点的荧光性质。在此,我们总结了GQD的基本光学特性,这些特性受尺寸/形状,锯齿形位点和缺陷密度的影响,这对于开发具有新颖特性的新型纳米器件非常重要。然后,我们重点介绍了石墨烯量子点探针在金属铁的荧光传感中的应用。我们还将讨论荧光GQD在金属离子传感器领域的当前挑战和应用前景。

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