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Structure elucidation of a complex CO2-based organic framework material by NMR crystallography

机译:NMR晶体学阐明复杂的基于CO2的有机骨架材料的结构

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摘要

A three-dimensional structural model of a complex CO2-based organic framework made from high molecular weight, self-assembled, flexible and multi-functional oligomeric constituents has been determined de novo by solid-state NMR including DNP-enhanced experiments. The complete assignment of the 15N, 13C and 1H resonances was obtained from a series of two-dimensional through space and through bond correlation experiments. MM-QM calculations were used to generate different model structures for the material which were then evaluated by comparing multiple experimental and calculated NMR parameters. Both NMR and powder X-ray diffraction were evaluated as tools to determine the packing by crystal modelling, and at the level of structural modelling used here PXRD was found not to be a useful complement. The structure determined reveals a highly optimised H-bonding network that explains the unusual selectivity of the self-assembly process which generates the material. The NMR crystallography approach used here should be applicable for the structure determination of other complex solid materials.
机译:由高分子量,自组装,柔性和多功能低聚物成分制成的复杂的基于CO2的有机骨架的三维结构模型已通过包括DNP增强实验的固态NMR从头确定。从一系列二维贯穿空间和键相关性获得 15 N, 13 C和 1 H共振的完整分配实验。 MM-QM计算用于生成材料的不同模型结构,然后通过比较多个实验参数和计算出的NMR参数进行评估。 NMR和粉末X射线衍射均被评估为通过晶体建模确定堆积的工具,在此处使用的结构建模水平上,发现PXRD并不是有用的补充。确定的结构揭示了高度优化的氢键网络,该网络解释了产生材料的自组装过程的异常选择性。此处使用的NMR晶体学方法应适用于其他复杂固体材料的结构测定。

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