Advancements in on-site heavy metal detection: Characterizing and sensitive Hg2+ sensing of silver spheroid nanoparticles obtained by laser ablation synthesis in solution

IF 4.9 2区 化学 Q1 CHEMISTRY, ANALYTICAL Microchemical Journal Pub Date : 2024-09-07 DOI:10.1016/j.microc.2024.111597
J.O. Esquivel-Rincón, A.R. Vilchis-Nestor, V.F. Ruiz-Ruiz, O.F. Olea-Mejía
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Abstract

Heavy metal detection in water bodies is crucial to prevent potential harm to the environment, animals and humans. While powerful techniques such as atomic absorption spectrometry exist, they often require extensive sample preparation and are typically confined to laboratory settings. As a result, alternative detection methods such as optical sensors, are under development to provide a simpler, faster, and on-site detection solution. In the present work spheroidal silver nanoparticles (AgNPs) with a mean size of 14.7 ± 0.6 nm were synthesized by laser ablation in a sodium citrate solution. These nanoparticles exhibit a localized surface plasmon resonance (LSPR), which is profoundly dependent on the size, morphology and composition of the nanoparticles and the refractive index of the surrounding media. The detection capabilities of these nanoparticles were assessed by exposing them to various metal ions, revealing a distinctive sensitivity to Hg ions. Notably, this particular ion had a significant impact on the extinction curve of the AgNPs. The impact of synthesis parameters, including sodium citrate and NaCl concentration, as well as pH, on the efficacy of Hg detection was systematically studied. Characterization techniques such as Dynamic Light Scattering (DLS), Transmission Electron Microscopy (TEM), High-Resolution TEM (HRTEM), and Scanning Transmission Electron Microscopy (STEM) were employed to determine the size, morphology, distribution, crystalline structure, and elemental composition of the AgNPs. The results indicated that AgNPs synthesized through laser ablation in a sodium citrate solution exhibited sensitive detection capabilities for Hg ions, reaching an LOD and LOQ of 0.9355 μM and 2.8350 μM respectively.
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现场重金属检测的进展:在溶液中通过激光烧蚀合成获得的球形银纳米粒子的特性和对 Hg2+ 的灵敏感应
检测水体中的重金属对于防止对环境、动物和人类造成潜在危害至关重要。虽然存在原子吸收光谱法等强大的技术,但这些技术通常需要大量的样品制备,而且通常仅限于实验室环境。因此,目前正在开发光学传感器等替代检测方法,以提供更简单、快速和现场检测的解决方案。本研究在柠檬酸钠溶液中通过激光烧蚀合成了平均尺寸为 14.7 ± 0.6 nm 的球形银纳米粒子(AgNPs)。这些纳米粒子表现出局部表面等离子体共振(LSPR),它与纳米粒子的尺寸、形态和组成以及周围介质的折射率密切相关。通过将这些纳米粒子暴露于各种金属离子,对其检测能力进行了评估,结果表明它们对汞离子具有独特的灵敏度。值得注意的是,汞离子对 AgNPs 的消光曲线有显著影响。系统研究了柠檬酸钠、NaCl 浓度和 pH 值等合成参数对汞检测效果的影响。采用动态光散射(DLS)、透射电子显微镜(TEM)、高分辨率电子显微镜(HRTEM)和扫描透射电子显微镜(STEM)等表征技术测定了 AgNPs 的尺寸、形态、分布、晶体结构和元素组成。结果表明,在柠檬酸钠溶液中通过激光烧蚀合成的 AgNPs 对汞离子具有灵敏的检测能力,其 LOD 和 LOQ 分别为 0.9355 μM 和 2.8350 μM。
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来源期刊
Microchemical Journal
Microchemical Journal 化学-分析化学
CiteScore
8.70
自引率
8.30%
发文量
1131
审稿时长
1.9 months
期刊介绍: The Microchemical Journal is a peer reviewed journal devoted to all aspects and phases of analytical chemistry and chemical analysis. The Microchemical Journal publishes articles which are at the forefront of modern analytical chemistry and cover innovations in the techniques to the finest possible limits. This includes fundamental aspects, instrumentation, new developments, innovative and novel methods and applications including environmental and clinical field. Traditional classical analytical methods such as spectrophotometry and titrimetry as well as established instrumentation methods such as flame and graphite furnace atomic absorption spectrometry, gas chromatography, and modified glassy or carbon electrode electrochemical methods will be considered, provided they show significant improvements and novelty compared to the established methods.
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