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Supermacroporous polyHIPE and cryogel monolithic materials as stationary phases in separation science: a review

机译:超宏观聚HIPE和冷冻凝胶整体材料在分离科学中的固定相:综述

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摘要

With their unique supermacroporous architecture, polyHIPEs (high internal phase emulsions) and cryogels have huge potential as analytical separation stationary phases. Due to their fully interconnected pore structure, mass transfer occurs predominantly via convection, potentially allowing for enhanced chromatographic performance. Additionally their surface functionalities can be tailored by modification of substrates both during and post fabrication. Their surface area is typically lower than comparable particulate stationary phases and problems with their rigidity persist. For these reasons, apart from their applications for large biomolecule analysis, the potential of cryogel and polyHIPE materials as separation phases in separation science have not been extensively realised. However, multiple strategies exist to overcome these limitations, potentially enabling the application of cryogels and polyHIPEs for a diverse range of separations. Current applications, such as chelation resins, which demonstrate the diverse interaction modes of both supermacroporous substrates, and applications of both substrates in analytical separations are considered in this review. Additionally the limitations of these technologies are explored, and strategies to overcome these limitations and further develop these monolithic phases for analytical separations are presented.
机译:凭借其独特的超宏观结构,polyHIPEs(高内相乳液)和冷冻凝胶具有巨大的潜力,可作为分析分离固定相。由于它们具有完全互连的孔结构,因此主要通过对流进行传质,从而有可能提高色谱性能。另外,它们的表面功能可以通过在制造期间和制造后对基板的修改来定制。它们的表面积通常低于可比的颗粒固定相,并且其刚性问题仍然存在。由于这些原因,除了在大型生物分子分析中的应用外,尚未充分认识到冷冻凝胶和polyHIPE材料作为分离科学中分离相的潜力。然而,存在克服这些限制的多种策略,潜在地使得能够将冻胶和polyHIPE应用于各种分离。在这篇综述中考虑了目前的应用,例如螯合树脂,它们证明了两种超巨基质在不同的相互作用模式,以及两种基质在分析分离中的应用。此外,还探讨了这些技术的局限性,并提出了克服这些局限并进一步开发这些整体相用于分析分离的策略。

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