Meekel Emily G, Nicholas Thomas C, Slater Ben, Goodwin Andrew L
Inorganic Chemistry Laboratory South Parks Road Oxford OX1 3QR UK
Department of Chemistry, University College London 20 Gordon Street London WC1H 0AJ UK.
CrystEngComm. 2023 Dec 29;26(5):673-680. doi: 10.1039/d3ce01078c. eCollection 2024 Jan 29.
We explore the role and nature of torsional flexibility of carboxylate-benzene links in the structural chemistry of metal-organic frameworks (MOFs) based on Zn and benzenedicarboxlyate (bdc) linkers. A particular motivation is to understand the extent to which such flexibility is important in stabilising the unusual topologically aperiodic phase known as TRUMOF-1. We compare the torsion angle distributions of TRUMOF-1 models with those for crystalline Zn/1,3-bdc MOFs, including a number of new materials whose structures we report here. We find that both periodic and aperiodic Zn/1,3-bdc MOFs sample a similar range of torsion angles, and hence the formation of TRUMOF-1 does not require any additional flexibility beyond that already evident in chemically-related crystalline phases. Comparison with Zn/1,4-bdc MOFs does show, however, that the lower symmetry of the 1,3-bdc linker allows access to a broader range of torsion angles, reflecting a greater flexibility of this linker.
我们探讨了基于锌和苯二甲酸酯(bdc)连接体的金属有机框架(MOF)结构化学中羧酸 - 苯连接体的扭转灵活性的作用和本质。一个特别的动机是了解这种灵活性在稳定被称为TRUMOF - 1的异常拓扑非周期性相方面的重要程度。我们将TRUMOF - 1模型的扭转角分布与结晶态锌/1,3 - bdc MOF的扭转角分布进行了比较,其中包括一些我们在此报告其结构的新材料。我们发现,周期性和非周期性的锌/1,3 - bdc MOF都采样了相似的扭转角范围,因此TRUMOF - 1的形成不需要除了在化学相关结晶相中已经明显存在的灵活性之外的任何额外灵活性。然而,与锌/1,4 - bdc MOF的比较确实表明,1,3 - bdc连接体较低的对称性允许进入更广泛的扭转角范围,这反映了该连接体更大的灵活性。