等结构
化学
类金刚石
晶格能
分子
晶体工程
结晶
共价键
分子间力
非共价相互作用
结晶学
Crystal(编程语言)
溶剂
金属有机骨架
晶体结构
化学物理
氢键
吸附
有机化学
程序设计语言
计算机科学
作者
Tom Hasell,Jamie L. Culshaw,Samantha Y. Chong,Marc Schmidtmann,Marc A. Little,Kim E. Jelfs,Edward O. Pyzer‐Knapp,Hilary Shepherd,Dave J. Adams,Graeme M. Day,Andrew I. Cooper
摘要
Small structural changes in organic molecules can have a large influence on solid-state crystal packing, and this often thwarts attempts to produce isostructural series of crystalline solids. For metal-organic frameworks and covalent organic frameworks, this has been addressed by using strong, directional intermolecular bonding to create families of isoreticular solids. Here, we show that an organic directing solvent, 1,4-dioxane, has a dominant effect on the lattice energy for a series of organic cage molecules. Inclusion of dioxane directs the crystal packing for these cages away from their lowest-energy polymorphs to form isostructural, 3-dimensional diamondoid pore channels. This is a unique function of the size, chemical function, and geometry of 1,4-dioxane, and hence, a noncovalent auxiliary interaction assumes the role of directional coordination bonding or covalent bonding in extended crystalline frameworks. For a new cage, CC13, a dual, interpenetrating pore structure is formed that doubles the gas uptake and the surface area in the resulting dioxane-directed crystals.
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