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原位原子力显微镜揭示微孔磷酸锌钠沸石的生长机制。

Growth mechanism of microporous zincophosphate sodalite revealed by in situ atomic force microscopy.

机构信息

Centre for Nanoporous Materials, School of Chemistry, The University of Manchester , Oxford Road, Manchester M13 9PL, United Kingdom.

出版信息

J Am Chem Soc. 2012 Aug 8;134(31):13066-73. doi: 10.1021/ja303814p. Epub 2012 Jul 25.

Abstract

Microporous zincophosphate sodalite crystal growth has been studied in situ by atomic force microscopy. This simple model system permits an in depth investigation of some of the axioms governing crystal growth of nanoporous framework solids in general. In particular, this work reveals the importance of considering the growth of a framework material as the growth of a dense phase material where the framework structure, nonframework cations, and hydrogen-bonded water must all be considered. The roles of the different components of the structure, including the role of strict framework ordering, are disentangled, and all of the growth features, both crystal habit and nanoscopic surface structure, are explained according to a simple set of rules. The work describes, for the first time, both ideal growth and growth leading to defect structures on all of the principal facets of the sodalite structure. Also, the discovery of the presence of anisotropic friction on a framework material is described.

摘要

原位原子力显微镜研究了微孔磷酸锌方钠石晶体的生长。该简单模型体系可深入研究纳米多孔骨架固体的晶体生长的一般规律。特别是,该工作揭示了将骨架材料的生长视为致密相材料生长的重要性,其中必须考虑骨架结构、非骨架阳离子和氢键合水。分离了结构的不同组成部分的作用,包括严格的骨架有序性的作用,并且根据一组简单的规则解释了所有的生长特征,包括晶体习性和纳米级表面结构。该工作首次描述了方钠石结构所有主要晶面上的理想生长和导致缺陷结构的生长。此外,还描述了在骨架材料上存在各向异性摩擦的发现。

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