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Electrostatic attraction-induced aggregation of polymer dots for the facile detection of melamine migration

机译:静电吸引诱导的聚合物点聚集在三聚氰胺迁移的体内探测中

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Many polymer dot (Pdot)-based assays involve complicated modifications for target recognition and detection. In this work, the fluorescence quenching of Pdots based on electrostatic attraction-induced aggregation was proposed for the first time. It was demonstrated that the prepared Pdots were negatively charged and electron-rich (e-Pdots), while protonated melamine was positively charged and electron-withdrawing. Therefore, the melamine was likely to electrostatically attract the e-Pdots, resulting in the aggregation of a melamine-e-Pdot complex. Meanwhile, the electron-transfer from the e-Pdots to the protonated melamine resulted in a remarkable fluorescence quenching. Accordingly, an e-Pdot-based assay was developed for the facile detection of melamine in the range of 0.1-100 nM and the limit of detection was as low as 0.03 nM. Furthermore, this method was applied for monitoring the melamine migration from a resin bowl, and the satisfactory results prove the promising applications of these e-Pdots.
机译:基于许多聚合物点(PDOT)的测定涉及对目标识别和检测的复杂修改。在这项工作中,首次提出了基于静电吸引诱导的聚集的PDOT的荧光猝灭。结果证明,制备的PDOT是带负电荷和富含电子(E-PDOTS)的PDO,而质子化三聚氰胺被带正电荷和放电。因此,三聚氰胺可能静电吸引E-PDOTS,导致三聚氰胺-E-PDOT复合物的聚集。同时,从E-Pdots到质子化三聚氰胺的电子转移导致荧光猝灭。因此,基于E-PDOT的测定对于0.1-100nm的三聚氰胺的体积检测,并且检测限低至0.03nm。此外,施加该方法用于监测树脂碗的三聚氰胺迁移,并且令人满意的结果证明了这些E-PDOT的有希望的应用。

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    《RSC Advances 》 |2019年第62期| 共5页
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  • 正文语种 eng
  • 中图分类 化学 ;
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