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Titlebook: Chiral Recognition in Separation Methods; Mechanisms and Appli Alain Berthod Book 2010 Springer-Verlag Berlin Heidelberg 2010 Chiral Ionic

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978-3-642-42369-7Springer-Verlag Berlin Heidelberg 2010
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Why a new semantics for extended programs?,een recognized as the most powerful for the resolution of a wide range of racemates, and nearly 90% of chiral compounds can be resolved at the analytical level using the polysaccharide-based CSPs. Although the qualitative understanding of the chiral recognition mechanism of polysaccharide-based CSPs
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Reasoning with Logic Programmings and/or the mobile phase requirements for application of certain detection systems have opened up many opportunities for cyclodextrin-based CSPs for liquid chromatography. Even though a few chiral stationary phases cover a wide area of enantioselectivity, they do not meet the entire needs of the in
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Reasoning with Logic Programmingeen the recognition and the separation of enantiomers in EKC, in particular. It is important to note that the dependence between recognition and separation is not as straightforward in EKC as it is in chromatographic separation techniques. Therefore, a clear understanding of these dependences is ver
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https://doi.org/10.1007/978-3-031-01566-3make very useful chiral stationary phases (CSP) with a broad spectrum of applicability in enantiomeric separation. The macrocyclic glycopeptide CSPs are multimodal, the same column being able to work in normal phase mode with apolar mobile phase, in reversed-phase mode, or in polar ionic mode with 1
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