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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Separation of phenolic acids from natural plant extracts using molecularly imprinted anion-exchange polymer confined ionic liquids
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Separation of phenolic acids from natural plant extracts using molecularly imprinted anion-exchange polymer confined ionic liquids

机译:使用分子印迹阴离子交换聚合物受限离子液体从天然植物提取物中分离酚酸

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摘要

Polymer-confined ionic liquids were used for the separation of phenolic acids from natural plant extract by utilizing an anion-exchange mechanism. They were synthesized using molecular imprinting technique to reduce non-directional ion-ion interactions during anion-exchange and other interactions with interference substances that could decrease selectivity. A suitable sorbent for phenolic acid separation could be identified based on the adsorption behaviors of phenolic acids on different polymer-confined ionic liquids. Thus, the developed ionic liquid-based molecularly imprinted anion-exchange polymer (IMAP) achieved high recovery rates by solid-phase extraction of phenolic acids from Salicornia herbacea L. extract: 90.1% for protocatechuic acid, 95.5% for ferulic acid and 96.6% for caffeic acid. Moreover, the phenolic acids were separable from each other by repeated solid phase extraction cycles. The proposed method could be used to separate other phenolic acids or organic acids from complex samples.
机译:聚合物限制的离子液体用于通过利用阴离子交换机制从天然植物提取物中分离酚酸。它们是使用分子印迹技术合成的,以减少阴离子交换过程中的非定向离子与离子的相互作用以及与干扰物质的其他相互作用,这些相互作用可能会降低选择性。根据酚酸在不同聚合物限制的离子液体上的吸附行为,可以确定一种适合酚酸分离的吸附剂。因此,开发的离子液体基分子印迹阴离子交换聚合物(IMAP)通过固相萃取柳叶柳提取物中的酚酸实现了高回收率:原儿茶酸为90.1%,阿魏酸为95.5%,阿魏酸为96.6%用于咖啡酸。此外,酚酸可通过重复的固相萃取循环彼此分离。该方法可用于从复杂样品中分离其他酚酸或有机酸。

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