Leonowicz M E, Lawton J A, Lawton S L, Rubin M K
Science. 1994 Jun 24;264(5167):1910-3. doi: 10.1126/science.264.5167.1910.
The molecular sieve MCM-22 contains structural features previously unobserved in this class of materials. Its framework topology, derived from high-resolution electron micrographs and refined with synchrotron x-ray diffraction powder data, contains two independent pore systems, both of which are accessed through rings composed of ten tetrahedral (T) atoms (such as Si, Al, and B). One of these pore systems is defined by two-dimensional, sinusoidal channels. The other consists of large supercages whose inner free diameter, 7.1 angstroms, is defined by 12 T-O species (12-rings) and whose inner height is 18.2 angstroms. These coexisting pore systems may provide opportunities for a wide variety of catalytic applications in the petrochemical and refining industries. Another structural feature is an unusual -T-O-T- chain that passes through the center of a modified dodecasil-1H [4(3)5(6)6(3)] cage.
分子筛MCM - 22具有这类材料中以前未观察到的结构特征。其骨架拓扑结构源自高分辨率电子显微镜图像,并通过同步加速器X射线衍射粉末数据进行细化,包含两个独立的孔系统,这两个孔系统都通过由十个四面体(T)原子(如硅、铝和硼)组成的环进入。其中一个孔系统由二维正弦通道定义。另一个由大的超笼组成,其内部自由直径为7.1埃,由12个T - O物种(12元环)定义,内部高度为18.2埃。这些共存的孔系统可能为石油化工和炼油行业的各种催化应用提供机会。另一个结构特征是一条不寻常的 -T - O - T - 链,它穿过一个改性十二硅-1H [4(3)5(6)6(3)]笼的中心。