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介观流控阀上平台在分析科学中的最新进展和未来展望——批判性评价。

Recent advances and future prospects of mesofluidic lab-on-a-valve platforms in analytical sciences--a critical review.

机构信息

Department of Chemistry, Faculty of Science, University of the Balearic Islands, E-07122 Palma de Mallorca, Illes Balears, Spain.

出版信息

Anal Chim Acta. 2012 Oct 31;750:3-15. doi: 10.1016/j.aca.2012.03.049. Epub 2012 Apr 5.

Abstract

Miniaturization and automation in analytical sciences have evolved tremendously over the past decade within the framework of green analytical chemistry. This manuscript outlines the unrivalled merits of advanced flow methodology capitalizing on mesofluidic platforms for the simplification and acceleration of the overall analytical process. Introduced back in 2000, the Lab-on-a-Valve concept (LOV), allied to sequential injection analysis, has emerged as an appealing downscaled analytical tool for pressure-driven sampling at the low μL level. Not the least, for advanced on-chip sample processing involving renewable micro-solid phase extraction (so-called bead injection analysis), non-chromatographic speciation or chemical vapor generation using programmable flow, for optical and electrochemical detection on-chip including optosensing approaches, or as a front end to modern detection equipment or column separation systems. It is the intention of this work to offer the authors' own critical vision as to where the field of LOV is being directed on the basis of the survey of the current state-of-the art of mesofluidic systems and identify what are the major cutting-edge challenges to be yet undertaken and what opportunities are offered by LOV for real-world applications that might not be at present tackled by lab-on-a-chip microfluidic approaches.

摘要

在绿色分析化学的框架内,分析科学中的微型化和自动化在过去十年中得到了巨大的发展。本文概述了先进流动方法的无与伦比的优点,这些方法利用中观流体平台简化和加速整体分析过程。2000 年推出的阀上实验室(LOV)概念与顺序注射分析相结合,已成为一种有吸引力的缩小分析工具,可用于在低 μL 水平下进行压力驱动采样。尤其是对于涉及可再生微固相萃取(所谓的珠注射分析)、非色谱形态分析或使用可编程流动进行化学蒸气发生的先进芯片上样品处理,以及包括光电传感方法在内的芯片上光学和电化学检测,或者作为现代检测设备或柱分离系统的前端。本工作旨在根据中观流体系统的最新技术现状,对 LOV 领域的发展方向提出作者自己的批判性看法,并确定 LOV 还面临哪些重大的前沿挑战,以及 LOV 为现实世界应用提供了哪些机会,而这些机会目前可能无法通过芯片上实验室微流体方法来解决。

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