Xie Ruixi, Oleschuk Richard
Department of Chemistry, Queen's University, Kingston, Ontario, Canada, K7L 3N6.
Anal Chem. 2007 Feb 15;79(4):1529-35. doi: 10.1021/ac061349t.
A novel fritless capillary column for capillary electrochromatography (CEC) has been developed. The ODS microspheres were packed into a capillary and were then immobilized within an organic polymer prepared in situ through a photopolymerization process. The entrapment conditions were investigated to minimize the effect of the polymer matrix on the chromatographic properties of the packing material. The organic polymer matrix in the microsphere-packed column functions to link microspheres at specific sphere-sphere and sphere-capillary contact points. CEC separations of a PAH test mixture using entrapped columns with different UV illumination times were compared in terms of retention factor and separation efficiency. The optimized entrapped column demonstrated better chromatographic performance than similarly packed columns with conventional inlet and outlet frits. The electrochromatographic separations of hormones and peptides were also demonstrated on entrapped ODS columns.
已开发出一种用于毛细管电色谱(CEC)的新型无烧结毛细管柱。将ODS微球填充到毛细管中,然后通过光聚合过程原位制备的有机聚合物将其固定。研究了包埋条件,以尽量减少聚合物基质对填充材料色谱性能的影响。微球填充柱中的有机聚合物基质起到在特定的球-球和球-毛细管接触点连接微球的作用。比较了使用不同紫外光照时间的包埋柱对多环芳烃测试混合物进行CEC分离时的保留因子和分离效率。优化后的包埋柱表现出比具有传统进出口烧结片的类似填充柱更好的色谱性能。在包埋的ODS柱上也实现了激素和肽的电色谱分离。