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Multipath colourimetric assay for copper(II) ions utilizing MarR functionalized gold nanoparticles

机译:MarR功能化的金纳米粒子对铜(II)离子的多径比色测定

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摘要

We use the multiple antibiotic resistance regulator (MarR), as a highly selective biorecognition elements in a multipath colourimetric sensing strategy for the fast detection of Cu2+ in water samples. The colourimetric assay is based on the aggregation of MarR-coated gold nanoparticles in the presence of Cu2+ ions, which induces a red-to-purple colour change of the solution. The colour variation in the gold nanoparticle aggregation process can be used for qualitative and quantitative detection of Cu2+ by the naked eye, and with UV–vis and smartphone-based approaches. The three analysis techniques used in the multipath colourimetric assay complement each other and provide greater flexibility for differing requirements and conditions, making the assay highly applicable for Cu2+ detection. Under optimal conditions, the Cu2+ concentration was quantified in less than 5 min with limits of detection for the naked eye, UV–vis and smartphone-based approaches of 1 μM, 405 nM and 61 nM, respectively. Moreover, the sensing system exhibited excellent selectivity and practical application for Cu2+ detection in real water samples. Thus, our strategy has great potential for application in on-site monitoring of Cu2+, and the unique response of MarR towards copper ions may provide a new approach to Cu2+ sensing.
机译:我们使用多重抗生素抗性调节剂(MarR)作为多径比色传感策略中的高度选择性生物识别元素,用于快速检测水中的Cu 2 + 。比色测定法是基于存在Cu 2 + 离子的MarR涂层金纳米颗粒的聚集,从而引起溶液的红色到紫色变化。金纳米粒子聚集过程中的颜色变化可用于肉眼,基于UV-vis和基于智能手机的方法对Cu 2 + 的定性和定量检测。多径比色测定法中使用的三种分析技术相互补充,并为不同的要求和条件提供了更大的灵活性,从而使该测定法高度适用于Cu 2 + 检测。在最佳条件下,Cu 2 + 的浓度可在不到5µmin的时间内定量,肉眼,UV-vis和基于智能手机的方法的检测极限分别为1µμM,405µnM和61µnM,分别。此外,该传感系统具有很好的选择性,在实际水样中Cu 2 + 的检测中具有实际应用价值。因此,我们的策略在现场监测Cu 2 + 方面具有很大的潜力,MarR对铜离子的独特响应可能为Cu 2 + 感应。

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