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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Synthesis and modeling of calix[4]pyrrole wrapped Au nanoprobe for specific detection of Pb(II): Antioxidant and radical scavenging efficiencies
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Synthesis and modeling of calix[4]pyrrole wrapped Au nanoprobe for specific detection of Pb(II): Antioxidant and radical scavenging efficiencies

机译:CALIX [4]吡咯包装Au nanocobe的合成和建模,用于PB(II)的特异性检测:抗氧化剂和自由基清除效率

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摘要

Newly synthesized Au nanoparticles (AuNPs) capped by calix[4]pyrrole tetrahydrazide (CPTH) has been explored for the colorimetric and fluorimetric detection of Pb(II) ions. The molecular modeling studies reveal the surface mediated properties of CPTH around AuNPs. It is observed that reduction of Au(III) to Au(0) occurs due to the presence of hydrazide groups of CPTH and charge transfer preferably through N atoms and carbonyl group. These interactions further govern the stability of the CPTH-AuNPs. The optical sensing of Pb(II) was carried out in water and the linear range of detection falls between 10?nM and 1?μM concentration range. Moreover, a concomitant pink-to-violet color change is observed providing a useful optical method of detecting Pb(II) in water. The mechanistic insights for the sensing of Pb(II) is based on the overarching hypothesis that Pb(II)ions disturbs the non-covalent interactions of the capping CPTH ligand around the Au° particles causing aggregation of CPTH-AuNPs. The aggregation of CPTH-AuNPs has been elucidated by TEM and DLS experiments. Also, the plausible binding behavior of CPTH-AuNPs with Pb(II) due to hydrogen bonding interactions through –NH groups is discussed. CPTH-AuNPs have also shown their utility for analysis of Pb(II) in industrial waste water and human serum samples. The ability of CPTH-AuNPs for itsin vitroanti-oxidant activity and radical scavenging efficiencies has been studied. Thus, the present study suggests notable potential of supramolecular functionalized nanoparticles as a promising chemosensor for toxic ions and a beneficial tool for biomedical applications.
机译:通过CALIX [4]吡咯四氮杂物(CPTH)覆盖的新合成的AU纳米颗粒(AUNP)用于PB(II)离子的比色和荧光检测。分子建模研究揭示了AuNP周围CPTH的表面介导的性质。观察到,由于存在CPTH和电荷转移的酰度,优选通过N原子和羰基,发生降低Au(III)至Au(0)的含量。这些相互作用进一步控制了CPTH-AUNP的稳定性。 Pb(II)的光学感测在水中进行,线性检测范围在10℃和1·μm浓度范围内。此外,观察到伴随粉红色紫色的变色,在水中检测PB(II)的有用光学方法提供了一种检测PB(II)。感测PB(II)的机械洞察力基于总体假设,即PB(II)离子散射覆盖CPTH配体的非共价相互作用,围绕CPTH-AUNP的聚集在Au°颗粒周围。 CPTH-AUNP的聚集已被TEM和DLS实验阐明。而且,讨论了由于通过-NH组的氢键相互作用而具有PB(II)的CPTH-AUNP的合理结合行为。 CPTH-AUNPS还示出了它们的效用,用于分析工业废水和人血清样品中的PB(II)。研究了CPTH-AUNP对其体valianti-氧化活性和自由基清除效率的能力。因此,本研究表明超分子官能化纳米粒子的显着潜力作为有趣的化学传感器,用于有毒离子和生物医学应用的有益工具。

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