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Determination of Both Mesopores and Macropores in Three-Dimensional Ordered Porous Materials by Nitrogen Adsorption

机译:氮吸附法测定三维有序多孔材料中的中孔和大孔

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Three-dimensionally ordered silica structures containing both mesopores and macropores are created using polystyrene coacervate spheres with a diameter of ca. 146 nm. The close-packed polystyrene coacervate spheres are intercalated with tetraethyl orthosilicate. The spheres are removed by calcination leaving an inverse silica replica with a spherical macropore cavity diameter of ~110 nm. Due to the nature of these porous structures, pores leading into the macropore cavity are in the mesopore regime, ~40 nm in diameter. The nitrogen adsorption data described in the following paper gives a pore size for both the macropore cavity and the mesopore openings leading into the cavity. The pore sizes as determined by nitrogen sorption are in good agreement with the pore sizes observed by scanning electron microscopy. Mercury intrusion porosimetry results confirm the size of the mesopore openings leading into the macropore cavity, however due to destruction of the sample upon intrusion, extrusion results can not be obtained to determine main cavity diameters. As a result, nitrogen sorption may be a viable option for determining pore sizes with these three-dimensionally ordered materials containing both mesopores and macropores.
机译:使用直径大约为1的聚苯乙烯凝聚层球体,可同时形成包含中孔和大孔的三维有序二氧化硅结构。 146海里。紧密堆积的聚苯乙烯凝聚层球体插入了原硅酸四乙酯。通过煅烧除去球体,留下具有约〜110nm的球形大孔腔直径的反向二氧化硅仿品。由于这些多孔结构的性质,通向大孔腔的孔处于中孔状态,直径约40 nm。以下论文中描述的氮吸附数据给出了大孔腔和通向该腔的中孔开口的孔径。通过氮吸附确定的孔径与通过扫描电子显微镜观察到的孔径非常一致。汞侵入孔隙率法测定的结果证实了通入大孔腔的中孔开口的大小,但是由于样品在侵入时被破坏,因此无法获得确定主腔直径的挤出结果。结果,对于这些同时包含中孔和大孔的三维有序材料,氮吸附可能是确定孔径的可行选择。

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