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首页> 外文期刊>Bulletin of the Korean Chemical Society >A Facile Hg2+‐related Quenching Photoluminescence Sensor Based on Nitrogen‐doped Graphene Quantum Dots
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A Facile Hg2+‐related Quenching Photoluminescence Sensor Based on Nitrogen‐doped Graphene Quantum Dots

机译:基于氮掺杂石墨烯量子点的容易HG2 +相关的淬火光致发光传感器

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A Hg2+‐related quenching photoluminescence (PL) sensor was fabricated based on nitrogen‐doped graphene quantum dots (N‐GQDs) as the luminescent agent and glutathione as the masking agent to detect Hg2+ in tap water. The addition of Hg2+ significantly reduced the PL intensity of N‐GQDs, which was attributed to coordination reaction inducing the aggregation of N‐GQDs. The Hg2+‐related quenching PL sensor with glutathione as the masking agent has good selectivity and accuracy. The sensor showed a linear relationship ranging from 0.5 to 110?nM with the detection limit 0.08?nM (S/N = 3). The proposed method was applied to the determination of Hg2+ in tap water, and the results were consistent with atomic absorption spectroscopy (AAS).
机译:基于氮气掺杂的石墨烯量子点(N-GQDS)作为发光剂和谷胱甘肽作为掩蔽剂以检测自来水中的Hg2 +,制造Hg2 +相关的淬火光致发光(P1)传感器。添加HG2 +显着降低了N-GQD的PL强度,其归因于诱导N-GQD的聚集的配位反应。随着谷胱甘肽作为掩模剂的HG2 +相关的淬火PL传感器具有良好的选择性和精度。传感器显示线性关系,范围为0.5至110ΩNM,检测限为0.08Ω·Nm(s / n = 3)。将该方法应用于自来水中Hg2 +的测定,结果与原子吸收光谱(AAS)一致。

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