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首页> 外文期刊>Scientific reports. >Mentha-Stabilized Silver Nanoparticles for High-Performance Colorimetric Detection of Al (III) in Aqueous Systems
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Mentha-Stabilized Silver Nanoparticles for High-Performance Colorimetric Detection of Al (III) in Aqueous Systems

机译:用于高性能比色纳米粒子的薄膜稳定的银纳米粒子在水性系统中的高性能比色度检测

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摘要

The present paper reports a facile and selective colorimetric method for the detection of potential environmental and health hazardous metal ions using green synthesized silver nanoparticles (AgNPs). Here the organic functional groups present in the plant extract (Mentha arvensis) are used as reductants and stabilizers in the synthesis of AgNPs. They also provide a suitable binding site to the (Al(III)) analyte in the detection mechanism. The leaf extract of Mentha arvensis was used to synthesize AgNPs at room-temperature and at 80?°C. The AgNPs synthesized at 80?°C exhibit excellent selective colorimetric detection of Al(III). The as-synthesized AgNPs have been characterized, and the synthesis, stabilization of NPs and detection mechanism has also been illustrated by using UV-vis, XPS, FTIR, TEM, EDX, SEM, AAS, and TGA analytical tools and techniques. The selectivity of detection probe was supported by the reaction between probe and metal ions followed first-order kinetics having the highest value of the regression coefficient (R2?=?0.99) for Al(III) and the analysis of thermodynamic parameters. The prepared sensor showed a lower?limit of detection?(LOD) of 1?nM (S/N?=?3.2) in real water samples. The proposed method can be successfully utilized for the detection of Al(III) from both drinking and real water samples at the nanomolar level.
机译:本文报告了使用绿色合成银纳米颗粒(AgNP)检测潜在环境和健康危险金属离子的容易和选择性的比色方法。这里存在于植物提取物(Mentha arvensis)中的有机官能团被用作合成AgNP的还原剂和稳定剂。它们还将合适的粘合位点提供给检测机制中(Al(III))分析物。 Mentha arvensis的叶子提取物用于在室温下合成AgNP和80℃。在80Ω℃下合成的AgNP表现出Al(III)的优异选择性比色性检测。已经表征了AS合成的AGNP,并且通过使用UV-Vis,XPS,FTIR,TEM,EDX,SEM,AAS和TGA分析工具和技术,还示出了合成,NPS和检测机构的合成,稳定化。通过探针和金属离子之间的反应支持检测探针的选择性,其遵循具有最高值的一阶动力学(III)的回归系数的最高值(R2≤0.99)和热力学参数的分析。制备的传感器显示出较低的?(LOD)在真实水样中的1?nm(s /n≤x≤3.2)。该方法可以成功地用于检测纳米摩尔水平的饮用和真实水样的Al(III)。

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