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Graphene Quantum Dots as Fluorescence Probes for Turn-off Sensing of Melamine in the Presence of Hg~(2+)

机译:石墨烯量子点作为Hg〜(2+)存在下三聚氰胺关断传感的荧光探针

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摘要

A rapid and sensitive fluorescence sensing system for melamine based on charge transfer quenching of the fluorescence of graphene quantum dots (GQDs) in the presence of Hg~(2+) is proposed. The synthesized GQDs were strongly luminescent with predominantly aromatic sp~2 domains. Melamine could coordinate with mercury through nitrogen atoms in both its amine and triazine groups and bring more Hg~(2+) to the surface of GQDs through π—π stacking, thus leading to quenching of the GQDs' fluorescence. The quenching mechanism was investigated in detail and ascribed to charge transfer from the GQDs to Hg~(2+) with melamine acting as the linkage agent. The melamine demonstrated a linear range 0.15—20 μM and a detection limit of 0.12 μM, which was far below the regulatory level, suggesting the promising practical usage of this sensing system. This sensing system also possessed high selectivity for melamine in the presence of possible interferences. Finally, this novel sensor was successfully applied for melamine detection in raw milk and satisfactory recovery was achieved.
机译:提出了一种基于Hg〜(2+)存在下石墨烯量子点(GQDs)荧光电荷转移猝灭的三聚氰胺快速灵敏传感系统。合成的GQD强烈发光,主要带有芳香族sp〜2结构域。三聚氰胺可通过其胺和三嗪基团中的氮原子与汞配位,并通过π-π堆积将更多的Hg〜(2+)带入GQD的表面,从而导致GQD的荧光猝灭。详细研究了猝灭机理,并以三聚氰胺为连接剂,将电荷从GQDs转移至Hg〜(2+)。三聚氰胺的线性范围为0.15-20μM,检出限为0.12μM,远低于法规水平,表明该传感系统的实际应用前景广阔。在可能的干扰存在下,该传感系统还具有对三聚氰胺的高选择性。最终,该新型传感器成功应用于生乳中三聚氰胺的检测,回收率令人满意。

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