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The synthesis of switch-off fluorescent water-stable copper nanocluster Hg2+ sensors via a simple one-pot approach by an in situ metal reduction strategy in the presence of a thiolated polymer ligand template

机译:关闸的合成荧光肥性铜纳米Hg2 +传感器通过一个简单的由原位金属锅的方法减少策略在硫醇盐的存在聚合物配体模板

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摘要

The fabrication of stable fluorescent copper nanoclusters (CuNCs) in aqueous media is still challenging, despite the low price and potential biomedical applications. Herein, we report a facile and efficient strategy for assembling CuNCs using multifunctional thiolated copolymers with pH and thermoresponsive features. The new nanohybrids are formed via a simple one-pot approach through the reduction of a copper salt with hydrazine in the presence of a multithiolated polymer, which provides a template during nanocluster assembly and further efficient protection against oxidation and aggregation. Furthermore, the thermo- and pH-responsive properties of the pristine copolymers endow the nanohybrids with these stimuli-responsive features. The thiol content and the macromolecular size of the polymer ligands exert strong influences on the final photophysical properties of these new hybrid luminescent nanoclusters. The existence of stable bright greenish-yellow emission in water over long periods of time, the high photostability under UV irradiation and the strong oxidation resistance toward hydrogen peroxide of the hybrid CuNCs suggest that they have great promise for nanomedicine, bioassay and nanosensor use. Furthermore, the polymeric CuNCs obtained have been successfully tested as optical switch-off sensors for the sensitive and highly selective detection of Hg2+ in the presence of other metal ions in liquid and solid states. Finally, we demonstrate the practical application of the new hybrid to Hg2+ detection in human urine.
机译:制造稳定的荧光铜制备(CuNCs)水媒体仍然是挑战,尽管低价格和潜力生物医学应用。简单和有效的策略来组装使用多功能CuNCs硫醇盐共聚物pH值和thermoresponsive特性。通过一个简单的锅nanohybrids形成方法通过减少铜盐联氨的存在multithiolated聚合物,它提供了一个模板在纳米组装和进一步有效防止氧化和聚合。此外,热,pH-responsive原始共聚物赋予的属性与这些stimuli-responsive nanohybrids特性。高分子聚合物配体施加的大小强烈影响最终的物理这些新的混合发光的性质发光机制。黄绿色的排放水长一段时间,在紫外线高耐光性辐照和强大的抗氧化性能对过氧化氢的混合CuNCs表明,他们有伟大的承诺纳米、生物测定和纳米传感器使用。此外,聚合物CuNCs获得被成功测试了光学关闸传感器的敏感和高选择性检测Hg2 +其他金属的存在离子液体和固体状态。展示的实际应用混合Hg2 +人类尿液检测。

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