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Sensitivity to Heavy-Metal Ions of Unfolded Fullerene Quantum Dots

机译:展开的富勒烯量子点对重金属离子的敏感性

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摘要

A novel type of graphene-like quantum dots, synthesized by oxidation and cage-opening of C60 buckminsterfullerene, has been studied as a fluorescent and absorptive probe for heavy-metal ions. The lattice structure of such unfolded fullerene quantum dots (UFQDs) is distinct from that of graphene since it includes both carbon hexagons and pentagons. The basic optical properties, however, are similar to those of regular graphene oxide quantum dots. On the other hand, UFQDs behave quite differently in the presence of heavy-metal ions, in that multiple sensitivity to Cu2+, Pb2+ and As(III) was observed through comparable quenching of the fluorescent emission and different variations of the transmittance spectrum. By dynamic light scattering measurements and transmission electron microscope (TEM) images we confirmed, for the first time in metal sensing, that this response is due to multiple complexation and subsequent aggregation of UFQDs. Nonetheless, the explanation of the distinct behaviour of transmittance in the presence of As(III) and the formation of precipitate with Pb2+ require further studies. These differences, however, also make it possible to discriminate between the three metal ions in view of the implementation of a selective multiple sensor.
机译:通过对C60 buckminsterfullerene的氧化和笼打开,合成了一种新型的石墨烯状量子点,作为重金属离子的荧光和吸收探针。这种未折叠的富勒烯量子点(UFQD)的晶格结构与石墨烯的晶格结构不同,因为它既包含碳六边形又包含五边形。但是,基本光学性质与规则的氧化石墨烯量子点相似。另一方面,UFQD在重金属离子存在下的行为有很大不同,对Cu 2 + ,Pb 2 + 和As(III)的多重敏感性为通过荧光发射的类似猝灭和透射光谱的不同变化观察到。通过动态光散射测量和透射电子显微镜(TEM)图像,我们首次在金属传感中确认了这种响应是由于UFQD的多重络合和随后的聚集所致。尽管如此,对于As(III)存在下透射率的独特行为以及与Pb 2 + 形成沉淀的解释尚需进一步研究。然而,鉴于选择性多重传感器的实现,这些差异也使得可以区分三种金属离子。

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