Recent overview of microextraction of metal ions and pharmaceuticals by solidified floating organic drop microextraction techniques

Shivam Kumar, Sourabh Satapathy, B. Kurmi, Ghanshyam Das Gupta, Preeti Patel
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Abstract

This work presents a comprehensive overview of solidified floating organic drop microextraction, with a particular emphasis on its applications in the analysis of heavy metal ions and different pharmaceutical compounds by sample pretreatment, complexation, and their identification by various analytical techniques. Here, we discussed basic principles, procedures, applications of the technique, and effects of different variables like pH, temperature, stirring rate, extraction time, salts addition, extraction solvent and extraction volume, centrifugation speed, and, vortex time on preconcentration. In brief, the review summarises the various modes of solidified floating organic drop microextraction such as dispersive liquid‐liquid microextraction, ultrasound‐assisted, air‐assisted liquid‐liquid microextraction, and vortex‐assisted solidified floating organic drop microextraction. this review covers the methods combined with analytical techniques such as inductively coupled plasma‐optical emission spectrometry, electrothermal atomic absorption spectrometry, flame atomic absorption spectroscopy, graphite furnace atomic absorption spectrometry, electrothermal vaporization inductively coupled plasma mass spectrometry, high‐performance liquid chromatography, and gas chromatography/mass spectrometry. among these, the incorporation of ultrasonic, vortex, and air agitation improves the dispersion mechanism. The coupling of solidified floating organic drop microextraction with other techniques enhances the selectivity and efficiency of the preconcentration procedure. This review provides a potential overview of the fundamental principles, advancements in various modes, influencing factors, and applications of solidified floating organic drop microextraction, showing its potential for advancements in sample preparation and analytical methodologies across various domains.
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利用固化浮动有机液滴微萃取技术微萃取金属离子和药物的最新综述
本研究全面介绍了固态浮动有机液滴微萃取技术,重点介绍了该技术在重金属离子和不同药物化合物分析中的应用,包括样品预处理、络合以及通过各种分析技术进行鉴定。在此,我们讨论了该技术的基本原理、程序和应用,以及 pH 值、温度、搅拌速度、萃取时间、盐添加量、萃取溶剂和萃取体积、离心速度和涡旋时间等不同变量对预富集的影响。简而言之,本综述总结了固相浮动有机液滴微萃取的各种模式,如分散液-液微萃取、超声波辅助、空气辅助液-液微萃取和涡流辅助固相浮动有机液滴微萃取。本综述涵盖了与电感耦合等离子体光发射光谱法、电热原子吸收光谱法、火焰原子吸收光谱法、石墨炉原子吸收光谱法、电热蒸发电感耦合等离子体质谱法、高效液相色谱法和气相色谱/质谱法等分析技术相结合的方法。固化浮动有机液滴微萃取与其他技术的结合提高了预浓缩程序的选择性和效率。本综述对固相浮动有机液滴微萃取的基本原理、各种模式的进展、影响因素和应用进行了潜在概述,展示了其在样品制备和分析方法等各个领域的发展潜力。
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