研磨引起的多晶转变:以3-[1-(叔丁基羰基)氮杂丁-3-基]-1,2-恶唑-4-羧酸为例。

I. Konovalova, A. Shaposhnyk, V. Baumer, B. Chalyk, S. Shishkina
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摘要

结果表明,3-[1-(叔丁基羰基)氮杂丁-3-基]-1,2-恶唑-4-羧酸在研磨过程中发生了多晶转变。通过对晶体结构转变前后多晶结构的深入研究,揭示了分子和晶体结构发生多晶转变的一些前提条件和变化规律。在亚稳多晶1a中,构象柔性分子采用能量较高的构象,形成较不理想的线性超分子合成器。研磨过程中传递给晶体结构的额外能量足以克服氮转化和恶唑环围绕sp3-sp2单键旋转的低能垒。结果得到了具有较低能量构象的分子多晶1b,形成了更理想的中心对称超分子合子。对两种多晶态的相互作用能的研究表明,亚稳态多晶1a是由分子构建单元组织的,具有柱状层状结构。中心对称二聚体应被认为是更稳定的多晶型1b中的复杂构建单元,具有层状结构。
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Polymorphic transition due to grinding: the case of 3-[1-(tert-butoxycarbonyl)azetidin-3-yl]-1,2-oxazole-4-carboxylic acid.
A polymorphic transition as a result of grinding was found for 3-[1-(tert-butoxycarbonyl)azetidin-3-yl]-1,2-oxazole-4-carboxylic acid. The thorough study of polymorphic structures before and after crystal structure transformation has revealed some pre-conditions for a polymorphic transition and regularities of changes in molecular and crystal structure. In metastable polymorph 1a, the conformationally flexible molecule adopts a conformation with the higher energy and forms a less preferable linear supramolecular synthon. Additional energy imparted to a crystal structure during the grinding process proved to be enough to overcome low energy barriers for the nitrogen inversion and rotation of the oxazole ring around the sp3-sp2 single bond. As a result, polymorph 1b with a molecule adopting conformation with lower energy and forming a more preferable centrosymmetric supramolecular synthon was obtained. The study of pairwise interaction energies in the two polymorphs has shown that metastable polymorph 1a is organized by molecular building units and has a columnar-layered structure. A centrosymmetric dimer should be recognized as a complex building unit in more stable polymorph 1b, which has a layered structure.
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