首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Preparation and evaluation of monodispersed, submicron, non-porous silica particles functionalized with -CD derivatives for chiral-pressurized capillary electrochromatography
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Preparation and evaluation of monodispersed, submicron, non-porous silica particles functionalized with -CD derivatives for chiral-pressurized capillary electrochromatography

机译:手性加压毛细管电色谱法用-CD衍生物官能化的单分散亚微米无孔二氧化硅颗粒的制备和评估

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摘要

Submicron, non-porous, chiral silica stationary phase has been prepared by the immobilization of functionalized -CD derivatives to isocyanate-modified silica via chemical reaction and applied to the pressurized capillary electrochromatography (pCEC) enantio-separation of various chiral compounds. The submicron, non-porous, cyclodextrin-based chiral stationary phases (sub_m-CSP2) exhibited excellent chiral recognition of a wide range of analytes including clenbuterol hydrochloride, mexiletine hydrochloride, chlorpheniramine maleate, esmolol hydrochloride, and metoprolol tartrate. The synthesized submicron particles were regularly spherical and uniformly non-porous with an average diameter of around 800 nm and a mean pore size of less than 2 nm. The synthesized chiral stationary phase was packed into 10 cm x 100 m id capillary columns. The sub_m-CSP2 column used in the pCEC system showed better separation of the racemates and at a higher rate compared to those used in the capillary liquid chromatography mode (cLC) system. The sub_m-CSP2 possessed high mechanical strength, high stereoselectivity, and long lifespan, demonstrating rapid enantio-separation and good resolution of samples. The column provided an efficiency of up to 170000 plates/m for n-propylbenzene.
机译:通过经由化学反应将官能化的CD衍生物固定到异氰酸酯改性的二氧化硅上,制备了亚微米无孔手性二氧化硅固定相,并将其应用于各种手性化合物的加压毛细管电色谱(pCEC)对映分离。亚微米,无孔,基于环糊精的手性固定相(sub_m-CSP2)对包括盐酸克仑特罗,盐酸美西律汀,马来酸氯苯那敏,艾司洛尔盐酸盐和酒石酸美托洛尔在内的多种分析物表现出出色的手性识别。合成的亚微米颗粒呈规则球形且均匀无孔,平均直径约为800 nm,平均孔径小于2 nm。将合成的手性固定相填充到10 cm x 100 m id的毛细管柱中。与毛细管液相色谱模式(cLC)系统相比,pCEC系统中使用的sub_m-CSP2色谱柱显示出外消旋物的分离效果更好,分离率更高。 sub_m-CSP2具有较高的机械强度,较高的立体选择性和较长的使用寿命,显示出快速的对映体分离和良好的样品拆分度。该色谱柱对正丙基苯的效率高达170000板/米。

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