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Application of Metallic Nanoparticles and Their Hybrids as Innovative Sorbents for Separation and Pre-concentration of Trace Elements by Dispersive Micro-Solid Phase Extraction: A Minireview

机译:金属纳米颗粒及其杂种作为微型固体相萃取分离和预浓度的创新吸附剂:MINIREVIEW

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摘要

It is indisputable that separation techniques have found their rightful place in current analytical chemistry, considering the growing complexity of analyzed samples and (ultra)trace concentration levels of many studied analytes. Among separation techniques, extraction is one of the most popular ones due to its efficiency, simplicity, low cost and short processing times. Nonetheless, research interests are directed toward the enhancement of performance of these procedures in terms of selectivity. Dispersive solid phase extraction (DSPE) represents a novel alternative to conventional solid phase extraction (SPE) which not only delivers environment-friendly extraction with less solvent consumption, but also significantly improves analytical figures of merit. A miniaturized modification of DSPE, known as dispersive micro-solid phase extraction (DMSPE), is one of the most recent trends and can be applied for the extraction of wide variety of analytes from various liquid matrices. While DSPE procedures generally use sorbents of different origin and sizes, in DMSPE predominantly nanostructured materials are required. The aim of this paper is to provide an overview of recently published original papers on DMSPE procedures in which metallic nanoparticles and hybrid materials containing metallic particles along with other (often carbon-based) constituent(s) at the nanometer level have been utilized for separation and pre-concentration of (ultra)trace elements in liquid samples. The studies included in this review emphasize the great analytical potential of procedures producing reliable results in the analysis of complex liquid matrices, where the detection of target analyte is often complicated by the presence of interfering substances.
机译:这是不争的事实分离技术已经发现了当前分析化学自己应有的位置,考虑到分析的样本,以及许多研究的分析物(超)微量浓度水平的日益复杂。之间的分离技术,提取是最流行的之一,由于其效率,简单性,低成本和短的处理时间。尽管如此,研究方向是朝向的这些程序性能在选择性方面的增强。分散固相萃取(DSPE)表示的新颖的替代传统的固相萃取(SPE),其不仅提供以较少的溶剂消耗环境友好型的提取,而且还提高了显著优点的分析图。 DSPE的小型化修饰,称为分散微固相萃取(DMSPE),是最新的趋势之一,并且可以被应用于的各种各样的不受各种液体基质的分析物的提取。虽然DSPE程序通常使用不同的来源和大小的吸附剂,在DMSPE需要主要纳米结构化材料。本文的目的是提供在其中金属纳米颗粒和含有金属颗粒在纳米级别其他(通常碳基)成分(S)沿着杂化材料已被用于分离上DMSPE程序最近发表原始论文概要并且液体样品中的(超)微量元素预浓缩。包括在此评价的研究强调的生产复杂液体矩阵,其中的目标分析物的检测通常是由干扰物质的存在复杂的分析可靠的结果的程序的巨大潜力的分析。

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