Institute of Chemistry, University of Campinas, 270 Monteiro Lobato, Campinas, São Paulo 13083-862 Brazil; National Institute of Science and Technology in Bioanalytics (INCTBio), Brazil.
Institute of Chemistry, University of Campinas, 270 Monteiro Lobato, Campinas, São Paulo 13083-862 Brazil; National Institute of Science and Technology in Bioanalytics (INCTBio), Brazil.
J Chromatogr A. 2022 Dec 6;1685:463603. doi: 10.1016/j.chroma.2022.463603. Epub 2022 Oct 27.
An important field of research is the miniaturization of analytical systems for laboratory applications and on-field analysis. In particular, gas chromatography (GC) has benefited from the recent advances in enabling technologies like photolithography, micromachining, hot embossing, and 3D-printing to improve sampling and sample preparation, microcolumn technologies, and detection. In this article, the developments and applications reported since 2015 were reviewed and summarized. Important applications using benchtop instruments, portable GCs, and micro-GCs (µGCs) were showcased to illustrate the current challenges associated with each miniaturized interfaces and systems. For instance, portable instruments need to be energy-efficient and ideally depend on renewable sources for carrier gas generation. Lastly, multidimensional separations were addressed using miniaturized systems to effectively improve the peak capacity of portable systems.
一个重要的研究领域是分析系统的微型化,用于实验室应用和现场分析。特别是,气相色谱(GC)受益于近年来在光刻、微加工、热压印和 3D 打印等使能技术方面的进步,这些技术改进了采样和样品制备、微柱技术和检测。本文综述了 2015 年以来报道的发展和应用。展示了使用台式仪器、便携式 GC 和微 GC(µGC)的重要应用,以说明与每个微型化接口和系统相关的当前挑战。例如,便携式仪器需要节能,并且理想情况下依赖于可再生能源来产生载气。最后,使用微型化系统解决多维分离问题,以有效提高便携式系统的峰容量。