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Electrical field-induced extraction and separation techniques: Promising trends in analytical chemistry - A review

机译:电场诱导的萃取和分离技术:分析化学的有前途的趋势-评论

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Sample preparation is an important issue in analytical chemistry, and is often a bottleneck in chemical analysis. So, the major incentive for the recent research has been to attain faster, simpler, less expensive, and more environmentally friendly sample preparation methods. The use of auxiliary energies, such as heat, ultrasound, and microwave, is one of the strategies that have been employed in sample preparation to reach the above purposes. Application of electrical driving force is the current state-of-the-art, which presents new possibilities for simplifying and shortening the sample preparation process as well as enhancing its selectivity. The electrical driving force has scarcely been utilized in comparison with other auxiliary energies. In this review, the different roles of electrical driving force (as a powerful auxiliary energy) in various extraction techniques, including liquid-, solid-, and membrane-based methods, have been taken into consideration. Also, the references have been made available, relevant to the developments in separation techniques and Lab-on-a-Chip (LOC) systems. All aspects of electrical driving force in extraction and separation methods are too specific to be treated in this contribution. However, the main aim of this review is to provide a brief knowledge about the different fields of analytical chemistry, with an emphasis on the latest efforts put into the electrically assisted membrane-based sample preparation systems. The advantages and disadvantages of these approaches as well as the new achievements in these areas have been discussed, which might be helpful for further progress in the future.
机译:样品制备是分析化学中的重要问题,并且通常是化学分析的瓶颈。因此,最近的研究的主要动机是获得更快,更简单,更便宜和更环保的样品制备方法。辅助能量(例如热,超声和微波)的使用是样品制备中达到上述目的的一种策略。电驱动力的应用是当前的最新技术,这为简化和缩短样品制备过程以及提高其选择性提供了新的可能性。与其他辅助能量相比,几乎没有利用电驱动力。在这篇综述中,已经考虑了电驱动力(作为强大的辅助能量)在各种提取技术中的不同作用,包括基于液体,基于固体和基于膜的方法。此外,与分离技术和芯片实验室(LOC)系统的发展相关的参考文献也已提供。提取和分离方法中电驱动力的所有方面都太具体,以致于无法对此做出贡献。但是,本综述的主要目的是提供有关分析化学不同领域的简要知识,并重点介绍基于电辅助膜的样品制备系统的最新成果。讨论了这些方法的优缺点以及在这些领域中的新成就,这可能有助于将来的进一步发展。

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