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Erbium-doped graphene quantum dots with up- and down-conversion luminescence for effective detection of ferric ions in water and human serum

机译:掺铒石墨烯量子点,具有上下转换发光,用于有效地检测水和人血清中的铁离子

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Herein, the erbium-doped graphene quantum dots (Er-GQDs) with up- and down-conversion fluorescence have, for the first time, been hydrothermally fabricated at lactose-to-erbium pentahydrate ratio of 50, and then employed as the nanosensing probe to detect Fe~(3+) ions in aqueous and human serum samples. The surface characterization shows that the 1.8 at% Er is successful incorporated into 2-8 nm GQD lattice to form Er-GQD nanoparticles. The Er~(3+)-doped GQDs exhibit both up and down-conversion luminescence properties after excitation with 730-nm visible light and 360-nm UV light, respectively. Both up- and down-conversion fluorescence properties of Er-GQDs show excellent analytical performance toward Fe~(3+) detection. A wide dynamic range of 4 orders of magnitude with limits of detection of 2.8-11.2 nM is observed when down-conversion property of Er-GQD is used for Fe~(3+) detection in PBS and human serum. Moreover, both up- and down-conversion fluorescence behaviors exhibit superior selectivity over 16 metal ion and 19 organic interferences. Results clearly indicate the feasibility of using Er-GQDs with both up- and down-conversion fluorescence properties as the nanosensing probe for highly selective and sensitive detection of metal ions in various environmental media, which can extend the application of up-conversion application from inorganic materials to carbon based nanomaterials for label-free detection of analysts in environmental and biological samples.
机译:这里,具有上调和下转化荧光的掺铒石墨烯量子点(ER-GQDS)在乳糖 - 铒戊二酸酯的比例下被水热制成50,然后用作纳米溶解探针检测水性和人血清样品中的Fe〜(3+)离子。表面表征表明,1.8个以%ER成功掺入2-8nm gqd晶格中以形成ER-GQD纳米颗粒。 ER〜(3 +)掺杂的GQDS分别以730-nm可见光和360nm紫外光的激发发生在激发后的上下转换发光性质。 ER-GQD的上下转换荧光性能均显示出Fe〜(3+)检测的优异的分析性能。当ER-GQD的下转换性能用于PBS和人血清中的Fe〜(3+)检测时,观察到具有2.8-11.2nm的检测限的4个具有2.8-11.2nm的限值的宽动态范围。此外,上下转换荧光行为均具有超过16个金属离子和19种有机干扰的优异选择性。结果清楚地表明,使用ER-GQDS具有上下转换荧光性能的可行性,作为纳米溶解探针,用于各种环境介质中的金属离子的高度选择性和敏感检测,这可以延长升压施用从无机的施加基于碳的纳米材料的材料无标记检测环境和生物样品的分析师。

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