首页> 外文期刊>Current Organic Chemistry >Monolithic Columns: The New Era in the Analysis of Organic Compounds by Liquid Chromatographic Techniques
【24h】

Monolithic Columns: The New Era in the Analysis of Organic Compounds by Liquid Chromatographic Techniques

机译:整体柱:液相色谱技术分析有机化合物的新时代

获取原文
获取原文并翻译 | 示例
           

摘要

The increasing demand for ultra-fast separations has motivated the development of new materials in the field of chromatographic stationary phases. Since High Performance Liquid Chromatography is a powerful and popular technique, the importance of improving existing supports, as well as the development of new types of columns is more than profound.nnThe advent of monolithic columns offered new practical possibilities for decreasing retention times and/or increasing column efficiencies, while pressure restriction was significantly eliminated. Monolithic columns are prepared by means of a polymerization process from either organic polymers, such as polymethacrylates, polystyrenes or from inorganic polymers, such as silica. Highly porous rods of silica with a bimodal pore structure consist of macropores and mesopores. The former consist of a dense network of pores, while the latter form contain fine porous structure of the column. This structure dictates the major chromatographic features of monolithic columns.nnSince many analytical methods employing conventional columns already exist, it is very challenging to study their transfer at similar or higher flow rates using monolithic rods with a considerable gain in time.nnApplications of analytical methods in organic analysis employing monoliths as stationary phase include pharmaceuticals, biofluids, food matrices, environmental samples, biochemical species, proteomics etc. Several additional application modes of monolithic columns have been explored. An emergence of applications is expected to continue as long as more experience is gained with monolithic column technology. Such an attempt has been prompted also by the need of reduction in organic solvent consumption, in the frame of environmental friendly methods.
机译:对超快速分离的不断增长的需求推动了色谱固定相领域中新材料的开发。由于高效液相色谱法是一种功能强大且广受欢迎的技术,因此改善现有支持物以及开发新型色谱柱的重要性远不止于此。整体式色谱柱的问世为减少保留时间和/或缩短分离时间提供了新的实用可能性。提高了柱效,同时显着消除了压力限制。整体塔是通过聚合方法由有机聚合物(例如聚甲基丙烯酸酯,聚苯乙烯)或无机聚合物(例如二氧化硅)制备的。具有双峰孔结构的高度多孔的二氧化硅棒由大孔和中孔组成。前者由致密的孔网络组成,而后者则包含柱的精细多孔结构。这种结构决定了整体式色谱柱的主要色谱特征.nn由于已经存在许多采用常规色谱柱的分析方法,因此以相当大的时间增益使用整体式棒研究它们在相似或更高流速下的转移是非常具有挑战性的。以整体结构为固定相的有机分析包括药物,生物流体,食品基质,环境样品,生化物种,蛋白质组学等。整体结构柱的其他几种应用模式也得到了探索。只要获得整体柱技术的更多经验,就有望继续出现应用程序。在环保方法的框架内,还需要减少有机溶剂的消耗,从而促使了这种尝试。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号