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首页> 外文期刊>Analytica chimica acta >Toward decentralized analysis of mercury (II) in real samples. A critical review on nanotechnology-based methodologies
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Toward decentralized analysis of mercury (II) in real samples. A critical review on nanotechnology-based methodologies

机译:进行真实样品中汞(II)的分散分析。对基于纳米技术的方法学的批判性评论

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摘要

In recent years, it has increased the number of works focused on the development of novel nanopartide-based sensors for mercury detection, mainly motivated by the need of low cost portable devices capable of giving fast and reliable analytical response, thus contributing to the analytical decentralization. Methodologies employing colorimetric, fluorometric, magnetic, and electrochemical output signals allowed reaching detection limits within the pM and nM ranges. Most of these developments proved their suitability in detecting and quantifying mercury (II) ions in synthetic solutions or spiked water samples. However, the state of art in these technologies is still behind the standard methods of mercury quantification, such as cold vapor atomic absorption spectrometry and inductively coupled plasma techniques, in terms of reliability and sensitivity. This is mainly because the response of nanoparticle-based sensors is highly affected by the sample matrix. The developed analytical nanosystems may fail in real samples because of the negative incidence of the ionic strength and the presence of exchangeable ligands. The aim of this review is to critically consider the recently published innovations in this area, and highlight the needs to include more realistic assays in future research in order to make these advances suitable for on-site analysis.
机译:近年来,它增加了专注于开发用于汞检测的新型基于纳米粒子的传感器的工作数量,这主要是由于需要能够提供快速而可靠的分析响应的低成本便携式设备,从而促进了分析分散。采用比色,荧光,磁和电化学输出信号的方法可以达到pM和nM范围内的检测极限。这些开发中的大多数证明了它们适用于检测和定量合成溶液或加标水样中的汞(II)离子。但是,就可靠性和灵敏度而言,这些技术的技术水平仍落后于汞定量的标准方法,例如冷蒸气原子吸收光谱法和感应耦合等离子体技术。这主要是因为基于纳米颗粒的传感器的响应受样品基质的影响很大。由于离子强度的负面影响和可交换配体的存在,发达的分析纳米系统可能无法在实际样品中使用。这篇综述的目的是批判性地考虑该领域最近发表的创新,并强调需要在未来的研究中包括更现实的分析方法,以使这些进展适合现场分析。

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