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Fluorescent Sensors Based on Organic Polymer-Capped Gold Nanoparticles for the Detection of Cr(VI) in Water

机译:基于有机聚合物包覆的金纳米粒子的荧光传感器用于检测水中的Cr(VI)

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摘要

“Turn-off” fluorescent sensors for Cr(VI) have been fabricated based on organic polymer-capped gold nanoparticles. The fluorescence intensity, as well as the response behavior of the sensors, is dependent on the pH values of buffer solution and dilution amounts of the sensors. When diluted 50 times with pH 2.0 buffer solution, the sensors show good linear responses toward Cr(VI) at concentrations between 2.8–5.9 μM and 5.9–29 μM. The calculated detection limit is 0.63 μM (S/N=3). The interference study and real sample assays exhibit satisfying selectivity and reliability results. Furthermore, the quenched intensity of fluorescence could be recovered by Fe(II) ion, which provides a potential method to detect Fe(II) ions. The quenching and recovering mechanisms have also been investigated. It is suggested that the quenching mechanism is based on the combined effects of internal electron transfer and the inner filter effect. Finally, the recovering mechanism is based on the redox reactions between the Cr(VI) and Fe(II) ions.
机译:Cr(VI)的“关闭”荧光传感器是基于有机聚合物封端的金纳米颗粒而制造的。荧光强度以及传感器的响应行为取决于缓冲溶液的pH值和传感器的稀释量。当用pH 2.0缓冲溶液稀释50倍时,传感器在2.8-5.9μm至5.9-29μm的浓度下对Cr(VI)表现出良好的线性响应。计算出的检出限为0.63μm(S / N = 3)。干扰研究和真实样品分析显示出令人满意的选择性和可靠性结果。此外,可以通过Fe(II)离子恢复荧光的猝灭强度,这为检测Fe(II)离子提供了一种潜在的方法。还研究了淬灭和回收机理。建议淬灭机理是基于内部电子传递和内部过滤器效应的综合作用。最后,恢复机理是基于Cr(VI)和Fe(II)离子之间的氧化还原反应。

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