Lee J Alex, Meng Linli, Norris David J, Scriven L E, Tsapatsis Michael
Department of Chemical Engineering and Materials Science, University of Minnesota, Minneapolis, Minnesota 55455-0132, USA.
Langmuir. 2006 Jun 6;22(12):5217-9. doi: 10.1021/la0601206.
Particles of the zeolite ZSM-2 prepared as nearly hexagonal nanoplatelets were coated onto flat substrates by a convective assembly technique. On the submillimeter scale, coatings ranged in patterns from striped to continuous. Particles were preferentially oriented out-of-plane, as supported by X-ray diffractometry. The novel observation is that where the particle coating was only a monolayer thick, particles were locally close-packed and uniformly oriented both in and out of plane in a hexagonal colloidal crystalline arrangement that may be described as being tiled (observations by scanning electron microscopy). This is the first documented demonstration of convective assembly applied to anisometric nanoparticles that resulted in particulate coatings with locally ordered microstructure, i.e., colloidal crystallinity.
通过对流组装技术将制备成近似六边形纳米片的ZSM-2沸石颗粒涂覆在平坦基底上。在亚毫米尺度上,涂层的图案从条纹状到连续状不等。X射线衍射测定结果表明,颗粒优先沿面外取向。新的观察结果是,在颗粒涂层仅为单层厚的地方,颗粒以六边形胶体晶体排列在面内和面外局部紧密堆积且均匀取向,这种排列可以描述为平铺状(通过扫描电子显微镜观察)。这是首次有文献记载的将对流组装应用于不等轴纳米颗粒,从而得到具有局部有序微观结构(即胶体结晶性)的颗粒涂层的实例。