González Gema, Stracke Werner, Lopez Zoraya, Keller Ulrike, Ricker Andrea, Reichelt Rudolf
Centro Tecnológico, Laboratorio de Materiales, Instituto Venezolano de Investigaciones Científicas, Apdo. 21827, Caracas 1020 A, Venezuela.
Microsc Microanal. 2004 Apr;10(2):224-35. doi: 10.1017/S1431927604040097.
High-resolution transmission (HRTEM) and high-resolution scanning electron microscopy as well as atomic force microscopy (AFM), X-ray diffraction, and electron diffraction were used for studying the zeolites MFI, MEL, and the MFIMEL intergrowth system. All three zeolites consisted of individual particles having a size in the range of approximately 0.5 m to 5 m. The particle habits varied from rather cubelike to almost spherelike with many intermediate habits. Typically, the particles of these three zeolites were assembled by many individual blocks that differed in the dimension from about 25 nm to 140 nm as well as in the shape from very frequently almost rectangular (for MFI, MEL, and MFIMEL) to sometimes roundish or irregular habits (mainly for MFIMEL). An estimate shows that some 104 up to more than 106 densely packed blocks typically may assemble each individual zeolite particle or, related to the corresponding unit cell dimension, about 108 up to 1010 unit cells. The fine surface structure of zeolite particles was terracelike with steps between adjacent terraces typically in the range of 20 nm to 60 nm; the minimum step measured was approximately 4 nm. A detailed study of the surface topography was performed by AFM, detecting organic molecules at the block intersections. The presence of topological defects was observed by HRTEM and electron diffraction.
利用高分辨率透射电子显微镜(HRTEM)、高分辨率扫描电子显微镜以及原子力显微镜(AFM)、X射线衍射和电子衍射对MFI、MEL沸石以及MFIMEL共生体系进行了研究。这三种沸石均由尺寸约为0.5μm至5μm的单个颗粒组成。颗粒形态从相当立方状到几乎球状不等,还有许多中间形态。通常,这三种沸石的颗粒由许多单个的块体组装而成,这些块体的尺寸从约25nm到140nm不等,形状从非常常见的几乎矩形(对于MFI、MEL和MFIMEL)到有时呈圆形或不规则形态(主要对于MFIMEL)。据估计,每个单个沸石颗粒通常可能由约10^4至超过10^6个紧密堆积的块体组装而成,或者相对于相应的晶胞尺寸,约为10^8至10^10个晶胞。沸石颗粒的精细表面结构呈梯田状,相邻梯田之间的台阶通常在20nm至60nm范围内;测量到的最小台阶约为4nm。通过AFM对表面形貌进行了详细研究,检测到块体交叉处存在有机分子。通过HRTEM和电子衍射观察到了拓扑缺陷的存在。