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首页> 外文期刊>RSC Advances >Persea americana seed extract mediated gold nanoparticles for mercury(ii)/iron(iii) sensing, 4-nitrophenol reduction, and organic dye degradation
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Persea americana seed extract mediated gold nanoparticles for mercury(ii)/iron(iii) sensing, 4-nitrophenol reduction, and organic dye degradation

机译:Persea Americana Seed提取物介导的金纳米颗粒用于汞(ii)/铁(iii)感测,4-硝基苯酚还原和有机染料降解

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In this work, Persea americana (Avocado) seed extract mediated systematically optimized synthesis has been employed for the formation of small sized gold nanoparticles (Av-AuNPs) at different pH values. The size, shape and crystallinity of the as-prepared AuNPs have been studied using transmission electron microscopy and X-ray diffraction. The nanoparticles were found to be selective towards mercury( II ) upon the prior or subsequent addition of iron( III ), revealing a blue shift and an enhancement of the characteristic surface plasmon resonance (at 519 nm). Similar absorbance based selectivity has been observed towards Fe( III ) in the presence of Hg( II ). The high sensitivity and selectivity of Av-AuNPs towards Hg( II ) and Fe( III ) has been attributed to the formation of core–shell structures. From the UV-visible spectroscopic measurements, the limits of detection for Hg( II ) and Fe( III ) are found to be 50 nM and 30 nM (around one order of magnitude less than the Environment Protection Agency limit of 0.7 μM for Fe( III ) in drinking water) respectively, with an excellent linear dependence over a wide range of concentrations. Additionally, as-prepared Av-AuNPs have been demonstrated to be efficient in the reduction of organic pollutant 4-nitrophenol to 4-aminophenol and degradation of some organic dyes, such as Methylene Blue, Direct blue, Rhodamine 6G, Bromophenol blue and methyl orange. The use of the proposed Av-AuNPs for sensing and green catalysis can form the basis of high-performance analytical assays, effective multiplexed intracellular sensors, and sophisticated and sustainable probes/catalysts.
机译:在这项工作中,Persea Americana(Avocado)种子提取物介导的系统地优化的合成已经用于在不同pH值中形成小尺寸的金纳米颗粒(AV-AUNP)。使用透射电子显微镜和X射线衍射研究了由制备的AUNP的尺寸,形状和结晶度。发现纳米颗粒在前后加入铁(III)时对汞(II)选择性化,揭示蓝色移位和增强特征表面等离子体共振(在519nm处)。在HG(II)的存在下,对Fe(III)观察到类似的基于吸光度的选择性。 AV-AUNP朝向HG(II)和Fe(III)的高灵敏度和选择性已归因于核心壳结构的形成。从UV可见光镜测量中,发现HG(II)和Fe(III)的检测限为50nm和30nm(比Fe0.7μm为0.7μm的环境保护机构限值约为0.7μm iii)分别在饮用水中,具有出色的线性依赖性在各种浓度范围内。另外,已经证明了如制备的AV-AUNPS在减少有机污染物4-硝基苯酚至4-氨基苯酚和一些有机染料的降解中有效,例如亚甲基蓝,直接蓝,罗丹明6g,溴苯酚蓝和甲基橙。使用所提出的AV-AUNP进行感测和绿色催化可以形成高性能分析测定,有效复用细胞内传感器和复杂和可持续的探针/催化剂的基础。

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