From capillaries to microchips, green electrophoretic features for enantiomeric separations: A decade review (2013–2022)

Enantioseparation by the electromigration‐based method is well‐established and widely discussed in the literature. Electrophoretic strategies have been used to baseline resolve complex enantiomeric mixtures, typically using a selector substance into the background electrolyte (BGE) from capillaries...

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Published in:Electrophoresis Vol. 44; no. 19-20; pp. 1471 - 1518
Main Authors: Aredes, Rafaella S., Lima, Isabela de P., Faillace, Amanda P., Madriaga, Vinicius G. C., Lima, Thiago de M., Vaz, Fernando A. S., Marques, Flávia F. de C., Duarte, Lucas M.
Format: Journal Article
Language:English
Published: Weinheim Wiley Subscription Services, Inc 01-10-2023
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Summary:Enantioseparation by the electromigration‐based method is well‐established and widely discussed in the literature. Electrophoretic strategies have been used to baseline resolve complex enantiomeric mixtures, typically using a selector substance into the background electrolyte (BGE) from capillaries to microchips. Along with developing new materials/substances for enantioseparations, it is the concern about the green analytical chemistry (GAC) principles for method development and application. This review article brings a last decade's update on the publications involving enantioseparation by electrophoresis for capillary and microchip systems. It also brings a critical discussion on GAC principles and new green metrics in the context of developing an enantioseparation method. Chemical and green features of native and modified cyclodextrins are discussed. Still, given the employment of greener substances, ionic liquids and deep‐eutectic solvents are highlighted, and some new selectors are proposed. For all the mentioned selectors, green features about their production, application, and disposal are considered. Sample preparation and BGE composition in GAC perspective, as well as greener derivatization possibilities, were also addressed. Therefore, one of the goals of this review is to aid the electrophoretic researchers to look where they have not.
Bibliography:ObjectType-Article-2
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ISSN:0173-0835
1522-2683
DOI:10.1002/elps.202200178