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One-Pot In-Situ Synthesis of 8-Armed Poly(Ethylene Glycol)-Coated Ag Nanoclusters as a Fluorescent Sensor for Selective Detection of Cu

机译:一种罐原位合成8臂聚(乙二醇) - 涂料的Ag纳米蛋白作为荧光传感器用于选择性检测Cu

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摘要

Fluorescent nanomaterials, such as quantum dots, have developed rapidly in recent years and have been significantly developed. Herein, we demonstrate a facile, one-pot, and in-situ synthesis strategy to obtain fluorescent silver nanoclusters (AgNCs) coated with eight-armed poly (ethylene glycol) polymers (8PEG-AgNCs) via a direct gel-mediated process. During the synthesis, ammonium (NH3) served as the crosslinker for the gel formation via a amine-type Michael addition reaction. This hydrogel can be used as a template to synthesize AgNCs using its volume-limiting effect. The in-situ generation of AgNCs takes place inside the nanocages of the formed gels, which guarantees the homogenous distribution of AgNCs in the gel matrix, as well as the efficient coating of PEG on the nanoclusters. After the degradation of gels, the released 8PEG-AgNCs nanohybrids showed strong blue fluorescence and exhibited long-term stability in aqueous solution for nearly one year. Results showed that the fabricated sensor revealed excellent fluorescent sensitivity for the selective detection of Cu2+ with a detection limit of 50 nM and a wide linear detection range of 5–100 μM. It is proposed that the greater cross-linking density leads to smaller gel pores and allows the synthesis of AgNCs with fluorescent properties. These results indicate that this novel hydrogel with certain biodegradation has the potential to be applied as a fluorescent sensor for catalytic synthesis, fluorescence tracing in cells, and fluorescence detection fields. Meanwhile, the novel design principle has a certain versatility to accelerate the development and application of other kinds of metal nanoclusters and quantum dots.
机译:荧光纳米材料(例如量子点)近年来迅速发展,并得到了显着发展。在此,我们证明了一种容易,单罐和原位合成策略,以通过直接凝胶介导的方法获得涂覆有八臂聚(乙二醇)聚合物(8PEG-AGNC)的荧光银纳米团簇(AGNC)。在合成期间,铵(NH 3)通过胺型迈克尔加成反应用作凝胶形成的交联剂。该水凝胶可以用作模板以使用其体积限制效果合成AGNC。原位产生AGNC在形成的凝胶的纳米内部发生,这保证了凝胶基质中AgNC的均匀分布,以及纳米能器上的PEG的有效涂层。在凝胶的降解之后,释放的8PEG-AGNC纳米胺显示出强大的蓝色荧光,并在水溶液中显示出近一年的长期稳定性。结果表明,制造的传感器显示出优异的荧光灵敏度,用于选择性检测Cu2 +,检测限为50nm,宽线性检测范围为5-100μm。提出,更大的交联密度导致较小的凝胶孔,并允许合成具有荧光特性的AgNC。这些结果表明,具有某些生物降解的这种新的水凝胶具有施加作为用于催化合成的荧光传感器的荧光传感器,荧光检测场和荧光检测场。同时,新颖的设计原则具有一定的多功能性,以加速其他种类的金属纳米能器和量子点的开发和应用。

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