Zhong Hengwen, El Rassi Ziad
Department of Chemistry, Oklahoma State University, Stillwater, OK 74078-3071, USA.
J Sep Sci. 2006 Aug;29(13):2031-7. doi: 10.1002/jssc.200600074.
Two polar ligands, namely 3-hydroxypropionitrile and 1H-imidazole-4,5-dicarbonitrile (IDCN) were covalently attached to epoxy-activated silica-based monolithic capillary columns via an epoxide ring-opening reaction to yield CN-OH-Monolith and 2CN-OH-Monolith, respectively. The silica monolith was prepared by a sol-gel process, and the resulting "rod-like" stationary phase was subjected to pore tailoring with an alkaline solution to convert small pore domains to mesopore domains, thus yielding a monolith with bimodal pore structure consisting of flow through pores (i.e., flow channels for mobile-phase flow) and mesopores that provide most of the adsorption capacity of the monolith toward the separated solutes. The two polar monoliths, CN-OH-Monolith and 2CN-OH-Monolith, were evaluated in normal-phase CEC with organic-rich mobile phases less polar than the stationary phase. The 2CN-OH-Monolith bearing more polar functions than the CN-OH-Monolith exhibited more retention and improved selectivity toward model polar solutes.
两种极性配体,即3-羟基丙腈和1H-咪唑-4,5-二甲腈(IDCN),通过环氧开环反应共价连接到环氧活化的硅胶整体毛细管柱上,分别得到CN-OH-整体柱和2CN-OH-整体柱。硅胶整体柱通过溶胶-凝胶法制备,所得的“棒状”固定相用碱性溶液进行孔剪裁,将小孔域转化为中孔域,从而得到具有双峰孔结构的整体柱,该结构由贯穿孔(即流动相流动的流道)和中孔组成,中孔提供了整体柱对分离溶质的大部分吸附容量。在正相毛细管电色谱中,使用极性比固定相小的富有机流动相,对两种极性整体柱CN-OH-整体柱和2CN-OH-整体柱进行了评价。与CN-OH-整体柱相比,具有更多极性官能团的2CN-OH-整体柱对模型极性溶质表现出更强的保留能力和更高的选择性。