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Recent Progress in Monolithic Silica Columns for High-Speed and High-Selectivity Separations
Annual Review of Analytical Chemistry ( IF 8 ) Pub Date : 2016-06-15 00:00:00 , DOI: 10.1146/annurev-anchem-071114-040102
Tohru Ikegami 1 , Nobuo Tanaka 2
Affiliation  

Monolithic silica columns have greater (through-pore size)/(skeleton size) ratios than particulate columns and fixed support structures in a column for chemical modification, resulting in high-efficiency columns and stationary phases. This review looks at how the size range of monolithic silica columns has been expanded, how high-efficiency monolithic silica columns have been realized, and how various methods of silica surface functionalization, leading to selective stationary phases, have been developed on monolithic silica supports, and provides information on the current status of these columns. Also discussed are the practical aspects of monolithic silica columns, including how their versatility can be improved by the preparation of small-sized structural features (sub-micron) and columns (1 mm ID or smaller) and by optimizing reaction conditions for in situ chemical modification with various restrictions, with an emphasis on recent research results for both topics.

中文翻译:


用于高速和高选择性分离的整体硅胶柱的最新进展

整体式硅胶色谱柱的比(通孔尺寸)/(骨架尺寸)比粒状色谱柱和用于化学改性的色谱柱中的固定支撑结构更大,从而形成了高效的色谱柱和固定相。这篇综述着眼于如何扩大整体硅胶柱的尺寸范围,如何实现高效整体硅胶柱,以及如何在整体硅胶载体上开发出导致选择性固定相的各种硅胶表面功能化方法,并提供有关这些列的当前状态的信息。还讨论了整体硅胶柱的实际情况,

更新日期:2016-06-15
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