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首页> 外文期刊>Materials science & engineering >Green synthesis of fluorescent PEG-ZnS QDs encapsulated into Co-MOFs as an effective sensor for ultrasensitive detection of copper ions in tap water
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Green synthesis of fluorescent PEG-ZnS QDs encapsulated into Co-MOFs as an effective sensor for ultrasensitive detection of copper ions in tap water

机译:绿色合成的荧光PEG-ZnS量子点封装在Co-MOF中,可作为超灵敏检测自来水中铜离子的有效传感器

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摘要

In this work, a novel and highly fluorescent (FL) metal-organic framework (MOF)-based host-guest hybrid system was developed through encapsulation of polyethylene glycol (PEG)-capped ZnS quantum dots (QDs) into zeolitic imidazolate framework (ZIF)-67 at ambient temperature. This new composite material was characterized by FT-1R, XRD, TEM, UV-Vis absorption and FL spectroscopy, and then exploited as fluorescence sensor for highly sensitive and selective detection of Cu (II) ions in water samples. The as-prepared PEG-ZnS QDs@ZIF-67 nanohybrids took advantages of both accumulation effect in ZIF-67 and FL sensitivity and selectivity in ZnS QDs toward analyte-Cu2+. In this regard, ZIF-67 was treated as absorbents to capture and enrich Cu (II) ions, and ZnS QDs were exploited as tentacle to selectively and sensitively sense the bonding interactions between ZIF-67 and Cu (II) ions, and further transduce these chemical events to the detectable fluorescence signals. By this approach, Cu2+ could be detected in a wide concentration range of 3 to 500 nM with a LOD as low as 0.96 nM. The proposed FL-sensor can be promising in the field of preparation of various QDs@MOFs platforms for application in high-performance optical sensing.
机译:在这项工作中,通过将聚乙二醇(PEG)封端的ZnS量子点(QD)封装到沸石咪唑酸酯骨架(ZIF)中,开发了一种基于新型高荧光(FL)金属-有机骨架(MOF)的宿主-客体混合系统。 )-67在环境温度下。这种新的复合材料通过FT-1R,XRD,TEM,UV-Vis吸收和FL光谱进行了表征,然后被用作荧光传感器,用于高灵敏度和选择性地检测水中的Cu(II)离子。制备的PEG-ZnS QDs @ ZIF-67纳米杂化物兼具ZIF-67的累积效应和ZnS QD对被分析物Cu2 +的FL敏感性和选择性的优势。在这方面,ZIF-67被用作吸收剂,以捕获和富集Cu(II)离子,而ZnS QD被用作触手,以选择性和灵敏地感知ZIF-67与Cu(II)离子之间的键相互作用,并进一步转导这些化学事件导致可检测的荧光信号。通过这种方法,可以在3至500 nM的宽浓度范围内检测到Cu2 +,LOD低至0.96 nM。所提出的FL传感器在准备用于高性能光学传感的各种QDs @ MOFs平台领域可能很有希望。

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