Grynbaum Marc David, Meyer Christoph, Putzbach Karsten, Rehbein Jens, Albert Klaus
Institute of Organic Chemistry, University of Tuebingen, Auf der Morgenstelle 18, 72076 Tuebingen, Germany.
J Chromatogr A. 2007 Jul 13;1156(1-2):80-6. doi: 10.1016/j.chroma.2006.11.032. Epub 2006 Nov 28.
The increased demand for chromatographic materials that are able to achieve a fast separation of large quantities of structure analogues is a great challenge. It is known that polymer based chromatographic materials have a higher loadability, compared to silica based sorbents. Unfortunately these polymer materials cannot be used under high pressure which is necessary in order to obtain high flow rates, and hence long times are needed to perform a separation. However, by immobilizing a polymer on a mechanically stable porous silica core, this problem can be circumvented and higher flows become feasible on these materials. Especially for capillary liquid chromatography hyphenated with nuclear magnetic resonance a high loadability is of great importance in order to obtain sharp, resolved, and concentrated peaks thus resulting in a good signal to noise ratio in the NMR experiment. Therefore, a highly shape selective chromatographic sorbent was developed by covalently immobilizing a poly(ethylene-co-acrylic) acid copolymer (-CH(2)CH(2)-)(x)CH(2)CH(CO(2)H)- (x=119, y=2.4) with a mass fraction of acrylic acid of 5% as stationary phase on silica via a spacer molecule (3-glycidoxypropyltrimethoxysilane). First, the loadability of this sorbent compared to C(30) is demonstrated by the HPLC separation of two xanthophyll isomers. Subsequently, it has been successfully employed in the hyphenation of capillary HPLC with microcoil (1)H NMR spectroscopy by separating and identifying a highly concentrated solution of the tocopherol homologues.
对能够快速分离大量结构类似物的色谱材料的需求不断增加,这是一个巨大的挑战。众所周知,与硅胶基吸附剂相比,聚合物基色谱材料具有更高的负载量。不幸的是,这些聚合物材料不能在高压下使用,而高压是获得高流速所必需的,因此进行分离需要很长时间。然而,通过将聚合物固定在机械稳定的多孔硅胶核上,可以规避这个问题,并且在这些材料上实现更高的流速变得可行。特别是对于与核磁共振联用的毛细管液相色谱,高负载量对于获得尖锐、分离且浓缩的峰非常重要,从而在核磁共振实验中产生良好的信噪比。因此,通过间隔分子(3-缩水甘油氧基丙基三甲氧基硅烷)将质量分数为5%的丙烯酸的聚(乙烯-共-丙烯酸)酸共聚物(-CH(2)CH(2)-)(x)CH(2)CH(CO(2)H)-(x = 119,y = 2.4)共价固定在硅胶上作为固定相,开发了一种高度形状选择性的色谱吸附剂。首先,通过两种叶黄素异构体的高效液相色谱分离证明了这种吸附剂与C(30)相比的负载量。随后,它已成功用于毛细管高效液相色谱与微线圈(1)H核磁共振光谱的联用,通过分离和鉴定生育酚同系物的高浓缩溶液。