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Simultaneous enrichment, separation and detection of mercury(II) ions using cloud point extraction and colorimetric sensor based on thermoresponsive hyperbranched polymer-gold nanocomposite

机译:基于热响应性超支化聚合物-金纳米复合材料的浊点萃取和比色传感器同时富集,分离和检测汞(II)离子

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摘要

A strategy for enriching, separating and detecting Hg2+ based on thermoresponsive hyperbranched polyethylenimine (HPEI) with isobutyramide (IBAm) end groups (HPEI-IBAm) capped gold nanoparticles (AuNPs) is reported. The thermoresponsive AuNPs can enrich approximately 94.5% of Hg2+ in solution, with higher enriching efficiency than that toward Ni2+, Cu2+, Mn2+, Pb2+ and Cr3+ heavy metal ions. The enriched Hg2+ can be separated by simple stratification or centrifugation. By virtue of the specific amalgam of reduced mercury(II) ions with thermoresponsive HPEI-IBAm capped gold nanoparticles (AuNPs), an unusual color change from red to fawn can be used as a colorimetric probe to detect Hg2+ with a limit of detection (LOD) of 8.8 nM by the naked eye and 1.1 nM by a UV-vis spectrophotometer. Importantly, this colorimetric sensor based on the formation of non-aggregated Au-Hg alloy stabilized by thermoresponsive HPEI-IBAm is more sensitive than that of the usual colorimetric sensors (red to blue) based on aggregation of AuNPs. After the color changed, the Au-Hg alloys did not aggregate further and could remain stable for a long observation time due to the stabilizing effects of HPEI-IBAm, which was convenient to record, detect and observe. The sensing process is very fast with a response time of less than 0.5 minutes. In addition, the proposed method showed an excellent selectivity for Hg2+ and was successfully applied in tap water and drinking water samples. Therefore, this strategy for the first time achieved simultaneous enrichment, separation and detection of Hg2+ based on the thermoresponsive HPEI-IBAm/AuNPs composite, which has the potential application for environmental renovation and groundwater analysis.
机译:报道了一种基于热响应性超支化聚乙烯亚胺(HPEI)和异丁酰胺(IBAm)端基(HPEI-IBAm)封端的金纳米颗粒(AuNPs)的富集,分离和检测Hg2 +的策略。热敏AuNPs可以富集溶液中约94.5%的Hg2 +,富集效率高于对Ni2 +,Cu2 +,Mn2 +,Pb2 +和Cr3 +重金属离子的富集效率。富集的Hg2 +可通过简单分层或离心分离。由于具有还原性的汞(II)离子与热响应性HPEI-IBAm封端的金纳米颗粒(AuNPs)的特定汞齐,从红色到浅黄褐色的异常颜色变化可以用作比色探针,以检测限(LOD)来检测Hg2 +。肉眼观察到8.8 nM的紫外光)和紫外可见分光光度计测得的1.1 nM)。重要的是,这种比色传感器基于通过热响应HPEI-IBAm稳定的非聚集Au-Hg合金的形成,比基于AuNP聚集的常规比色传感器(红色至蓝色)的灵敏度更高。颜色改变后,由于HPEI-IBAm的稳定作用,Au-Hg合金不再进一步聚集并且可以长时间观察稳定,便于记录,检测和观察。感应过程非常快,响应时间少于0.5分钟。此外,该方法对Hg2 +具有很好的选择性,并成功应用于自来水和饮用水样品中。因此,该策略首次基于热响应型HPEI-IBAm / AuNPs复合材料实现了Hg2 +的同时富集,分离和检测,在环境改造和地下水分析中具有潜在的应用。

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