Department of Chemistry, Faculty of Science, Srinakharinwirot University, Sukhumvit 23, Wattana, Bangkok, 10110, Thailand.
Electrochemistry and Optical Spectroscopy Center of Excellence, Department of Chemistry, Faculty of Science, Bangkok, 10330, Thailand.
Anal Sci. 2021 Jan 10;37(1):79-92. doi: 10.2116/analsci.20SAR02. Epub 2020 Sep 25.
In this review, we cite references from the period between 2015 and 2020 related to the use of a flow-based system as a tool to obtain a modern analytical system for speeding up data production and improving performance. Based on a great deal of concepts for automatic systems, there are several research groups introduced in the development of flow-based systems to increase sample throughput while retaining the reproducibility and repeatability as well as to propose new platforms of flow-based systems, such as microfluidic chip and paper-based devices. Additionally, to apply a developed system for on-site analysis is one of the key features for development. We believe that this review will be very interested and useful for readers because of its impact on developing novel analytical systems. The content of the review is categorized following their applications including quality control and food safety, clinical diagnostics, environmental monitoring and miscellaneous.
在这篇综述中,我们引用了 2015 年至 2020 年期间的参考文献,这些参考文献涉及使用基于流动的系统作为工具,以获得一种现代的分析系统,从而加快数据生产并提高性能。基于自动系统的大量概念,有几个研究小组在基于流动的系统的开发中被引入,以提高样品通量,同时保持重现性和可重复性,并提出基于流动的系统的新平台,如微流控芯片和纸基器件。此外,将开发的系统应用于现场分析是开发的关键特征之一。我们相信,由于其对开发新型分析系统的影响,这篇综述将对读者非常感兴趣和有用。综述的内容按照其应用进行分类,包括质量控制和食品安全、临床诊断、环境监测和其他方面。