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Polymorphism of N,N''-diacetylbiuret studied by solid-state C-13 and N-15 NMR spectroscopy, DFT calculations, and X-ray diffraction

机译:通过固态C-13和N-15 NMR光谱,DFT计算和X射线衍射研究N,N''-二乙酰基缩二脲的多态性

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The molecular configuration and crystal structure of solid polycrystalline N,N"-diacetylbiuret (DAB), a potential nitrogen-rich fertilizer, have been analyzed by a combination of solid- and liquid-state NMR spectroscopy, X-ray diffraction, and DFT calculations. Initially a pure NMR study ("NMR crystallography") was performed as available single crystals of DAB were not suitable for X-ray diffraction. Solid-state C-13 NMR spectra revealed the unexpected existence of two polymorphic modifications (alpha- and beta-DAB) obtained from different chemical procedures. Several NMR techniques were applied for a thorough characterization of the molecular system, revealing chemical shift anisotropy (CSA) tensors of selected nuclei in the solid state, chemical shifts in the liquid state, and molecular dynamics in the solid state. Dynamic NMR spectroscopy of DAB in solution revealed exchange between two different configurations, which raised the question, is there a correlation between the two different configurations found in solution and the two polymorphic modifications found in the solid state? By using this knowledge, a new crystallization protocol was devised which led to the growth of single crystals suitable for X-ray diffraction. The X-ray data showed that the same symmetric configuration is present in both polymorphic modifications, but the packing patterns in the crystals are different. In both cases hydrogen bonds lead to the formation of planes of DAB molecules. Additional symmetry elements, a two-fold screw in the case of a alpha-DAB and a c-glide plane in the case of beta-DAB, lead to a more symmetric (alpha-DAB) or asymmetric (beta-DAB) intermolecular hydrogen-bonding pattern for each molecule.
机译:固态和液态NMR光谱,X射线衍射和DFT计算相结合,分析了潜在的富氮肥料N,N“-二乙酰基缩二脲(DAB)固体多晶的分子结构和晶体结构最初进行了纯NMR研究(“ NMR晶体学”),因为可用的DAB单晶不适合X射线衍射,固态C-13 NMR光谱显示出意想不到的两种多晶型修饰(α-和β)存在-DAB),应用了几种NMR技术对分子系统进行全面表征,揭示了选定核在固态时的化学位移各向异性(CSA)张量,液态时的化学位移以及分子中的动力学溶液中DAB的动态NMR光谱揭示了两种不同构型之间的交换,这提出了一个问题,即两种差异之间是否存在相关性在解决方案中找到租用配置,在固态中找到两个多态性修饰?利用这一知识,设计了一种新的结晶方案,该方案导致了适用于X射线衍射的单晶的生长。 X射线数据表明,两种多晶型变体中都存在相同的对称构型,但晶体中的堆积模式不同。在这两种情况下,氢键都会导致DAB分子平面的形成。额外的对称元素,在α-DAB的情况下为双螺旋,在β-DAB的情况下为c-滑移面,导致分子间氢原子更对称(α-DAB)或不对称(β-DAB)每个分子的键合模式。

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