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Sequential detection of Fe3+ and As3+ ions by naked eye through aggregation and disaggregation of biogenic gold nanoparticles

机译:裸眼通过生物金纳米颗粒的聚集和解离顺序检测Fe3 +和As3 +离子

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摘要

We have synthesized and stabilized spherical, flower, urchin and polydispersed AuNPs using pomegranate (Punica granatum) peel extract. The AuNPs act as sequential sensors towards Fe3+ as well as As3+ ions. Upon addition of Fe3+ ions, the AuNPs aggregate due to the interaction between the capping agent and Fe3+ ions. The aggregation results in a color change that is visible to the naked eye, which originates from the interplasmon coupling of the AuNPs. Interestingly, the AuNP-Fe system disaggregates only in the presence of As3+ ions, resulting in a further color change in the visible region. The aggregation and disaggregation phenomena were examined by UV-vis spectroscopy, DLS, SEM, and TEM. The rates for the aggregation and disaggregation of the AuNP systems in the presence of the metal ions were determined. The naked eye detection limits for Fe3+ and As3+ ions were 10(-7) and 10(-4) M, respectively. Finally, we have demonstrated the practical application of biosynthesized AuNPs by real sample analysis.
机译:我们使用石榴皮(Punica granatum)果皮提取物合成并稳定了球形,花朵,海胆和多分散的AuNP。 AuNPs充当针对Fe3 +和As3 +离子的顺序传感器。添加Fe3 +离子后,由于封端剂和Fe3 +离子之间的相互作用,AuNP聚集。聚集导致肉眼可见的颜色变化,其源于AuNPs的质子间偶合。有趣的是,AuNP-Fe系统仅在存在As3 +离子时才分解,从而导致可见区域的颜色进一步变化。通过UV-可见光谱,DLS,SEM和TEM检查了聚集和解聚现象。确定在金属离子存在下AuNP体系的聚集和解离速率。 Fe3 +和As3 +离子的肉眼检测极限分别为10(-7)和10(-4)M。最后,我们通过实际样品分析证明了生物合成的AuNP的实际应用。

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