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Structural disorder and transformation in crystal growth: direct observation of ring-opening isomerization in a metal–organic solid solution

机译:晶体生长中的结构紊乱和转变:金属-有机固溶体中开环异构化的直接观察

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摘要

A rare example is reported in which discrete Ag2 L 2 ring and (AgL)∞ chain motifs [L = N,N′-bis(3-imidazol-1-yl-propyl)-pyromellitic diimide] co-crystallize in the same crystal lattice with varying ratios and degrees of disorder. Crystal structures obtained from representative crystals reveal compatible packing arrangements of the cyclic and polymeric isomers within the crystal lattice, which enables them to co-exist within a crystalline solid solution. A feasible pathway for transformation between the isomers is suggested via facile rotation of the coordinating imidazolyl groups. This chemical system could provide a chance for direct observation of ring-opening isomerization at the crystal surface. Mass spectrometry and 1H NMR titration show a dynamic equilibrium between cyclic and oligomeric species in solution, and a potential crystallization process is suggested involving alignment of precursors directed by aromatic stacking interactions between pyromellitic diimide units, followed by ring-opening isomerization at the interface between the solid and the solution. Both cyclic and oligomeric species can act as precursors, with interconversion between them being facile due to a low energy barrier for rotation of the imidazole rings. Thermogravimetric analysis and variable-temperature powder X-ray diffraction indicate a transition to a different crystalline phase around 120°C, which is associated with loss of solvent from the crystal lattice.
机译:报告了一个罕见的例子,其中离散的Ag2 L 2环和(AgL)∞链基序[L = N,N'-双(3-咪唑-1-基-丙基)-均苯四甲二酰亚胺]在同一晶体中共结晶比率和无序度不同的晶格。从代表性晶体获得的晶体结构揭示了晶格内环状和聚合异构体的相容堆积安排,这使它们能够共存于结晶固溶体中。通过配位的咪唑基的容易旋转,提出了异构体之间转化的可行途径。该化学系统可以提供直接观察晶体表面开环异构化的机会。质谱和 1 NMR滴定表明溶液中环状和低聚物质之间存在动态平衡,并提出了潜在的结晶过程,该过程涉及由均苯四甲二酰亚胺单元之间的芳族堆积相互作用引导的前体排列,然后是环-在固体和溶液之间的界面处的开环异构化。环状和低聚物质都可以充当前体,由于咪唑环旋转的能量垒低,因此它们之间的相互转化很容易。热重分析和变温粉末X射线衍射表明,在120°C附近转变为不同的晶相,这与溶剂从晶格中流失有关。

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