Institute of Fine Chemistry and Nanochemistry, Edificio Anexo Marie Curie, Campus de Rabanales, Universidad de Córdoba, 14071, Córdoba, Spain.
Anal Bioanal Chem. 2020 Sep;412(24):6037-6058. doi: 10.1007/s00216-020-02559-y. Epub 2020 Mar 23.
Supramolecular solvents (SUPRAS) have progressively become a suitable alternative to organic solvents for sample preparation in chromatographic analysis. The inherent properties of these nanostructured solvents (e.g. different polarity microenvironments, multiple binding sites, possibility of tailoring their properties, etc.) offer multiple opportunities for the development of innovative sample treatment platforms not approachable by conventional solvents. In this review, major achievements attained in the combination SUPRAS-chromatography in the last 20 years as well as the challenges that should be addressed in the near future are critically discussed. Among achievements, particular attention is paid to the theoretical and practical knowledge gained that has helped make substantial progress in the area. In this respect, advances in the understanding of the mechanisms involved in SUPRAS formation and SUPRAS-solute interactions driving extractions are discussed, with a view to the setting up of knowledge-based extraction procedures. Likewise, the strategies followed to improve the compatibility of SUPRAS extracts with liquid and gas chromatography and adapt SUPRAS-based extractions to different formats are presented. Ongoing efforts to apply SUPRAS in multicomponent extractions and synthesize tailored SUPRAS for the development of innovative sample treatments are highlighted. Among challenges identified, discussion is focused on the automation of SUPRAS-based sample treatment and the elucidation of SUPRAS nanostructures, which are considered essential for their acceptance in routine labs and the design of tailored SUPRAS with programmed functions. Graphical abstract.
超分子溶剂(Supramolecular Solvents,SUPRAS)已逐渐成为色谱分析样品制备中替代有机溶剂的合适选择。这些纳米结构溶剂的固有特性(例如不同的极性微环境、多个结合位点、可定制其性质等)为开发创新的样品处理平台提供了多种机会,而这些机会是传统溶剂无法实现的。在本文中,我们批判性地讨论了过去 20 年来 SUPRAS-色谱联用的主要成就以及未来不久需要解决的挑战。在成就方面,特别关注了在 SUPRAS 形成和 SUPRAS-溶质相互作用驱动萃取方面获得的理论和实践知识,以期建立基于知识的萃取程序。同样,我们还介绍了为提高 SUPRAS 提取物与液相和气相色谱的兼容性以及适应不同格式的 SUPRAS 萃取而采用的策略。此外,我们还强调了将 SUPRAS 应用于多组分萃取以及合成定制 SUPRAS 以开发创新样品处理的努力。在确定的挑战中,我们重点讨论了基于 SUPRAS 的样品处理的自动化以及 SUPRAS 纳米结构的阐明,这被认为是其在常规实验室中被接受以及设计具有编程功能的定制 SUPRAS 的关键。