Lubda Dieter, Lindner Wolfgang, Quaglia Milene, du Fresne von Hohenesche Cedric, Unger Klaus K
Merck KGaA, LSP R&D MDA, Frankfurter Str. 250, 64271 Darmstadt, Germany.
J Chromatogr A. 2005 Aug 12;1083(1-2):14-22. doi: 10.1016/j.chroma.2005.05.033.
The porosity of monolithic silica columns is measured by using different analytical methods. Two sets of monoliths were prepared with a given mesopore diameter of 10 and 25 nm, respectively and with gradated macropore diameters between 1.8 and 7.5 microm. After preparing the two sets of monolithic silica columns with different macro- and mesopores the internal, external and total porosity of these columns are determined by inverse size-exclusion chromatography (ISEC) using polystyrene samples of narrow molecular size distribution and known average molecular weight. The ISEC data from the 4.6 mm analytical monolithic silica columns are used to determine the structural properties of monolithic silica capillaries (100 microm I.D.) prepared as a third set of samples. The ISEC results illustrate a multimodal mesopore structure (mesopores are pores with stagnant zones) of the monoliths. It is found by ISEC that the ratio of the different types of pores is dependent on the change in diameter of the macropores (serve as flow-through pores). The porosity data achieved from the mercury penetration measurement and nitrogen adsorption as well of scanning electron microscopy (SEM) and transmission electron microscopy (TEM) pictures are correlated with the results we calculated from the ISEC measurements. The ISEC results, namely the multimodal pore structure of the monoliths, reported in several publications, are not confirmed analyzing the pore structures of the different silica monoliths using all other analytical methods.
整体硅胶柱的孔隙率通过不同的分析方法进行测量。制备了两组整体柱,其介孔直径分别给定为10纳米和25纳米,大孔直径在1.8至7.5微米之间呈梯度变化。在制备了两组具有不同大孔和介孔的整体硅胶柱之后,使用分子尺寸分布窄且平均分子量已知的聚苯乙烯样品,通过反相尺寸排阻色谱法(ISEC)测定这些柱的内部、外部和总孔隙率。来自4.6毫米分析型整体硅胶柱的ISEC数据用于确定作为第三组样品制备的整体硅胶毛细管(内径100微米)的结构特性。ISEC结果表明整体柱具有多峰介孔结构(介孔是具有停滞区的孔)。通过ISEC发现,不同类型孔的比例取决于大孔(用作流通孔)直径的变化。通过压汞法测量、氮吸附以及扫描电子显微镜(SEM)和透射电子显微镜(TEM)图片获得的孔隙率数据与我们从ISEC测量计算得出的结果相关。在几份出版物中报道的ISEC结果,即整体柱的多峰孔结构,在使用所有其他分析方法分析不同硅胶整体柱的孔结构时未得到证实。