Department of Chemical Engineering, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, United States.
J Phys Chem Lett. 2023 Jun 29;14(25):5798-5804. doi: 10.1021/acs.jpclett.3c01214. Epub 2023 Jun 20.
We survey more than 240 000 crystallized mononuclear transition metal complexes (TMCs) to identify trends in preferred geometric structure and metal coordination. While we observe that an increased level of d filling correlates with a lower coordination number preference, we note exceptions, and we observe undersampling of 4d/5d transition metals and 3p-coordinating ligands. For the one-third of mononuclear TMCs that are octahedral, analysis of the 67 symmetry classes of their ligand environments reveals that complexes often contain monodentate ligands that may be removable, forming an open site amenable to catalysis. Due to their use in catalysis, we analyze trends in coordination by tetradentate ligands in terms of the capacity to support multiple metals and the variability of coordination geometry. We identify promising tetradentate ligands that co-occur in crystallized complexes with labile monodentate ligands that would lead to reactive sites. Literature mining suggests that these ligands are untapped as catalysts, motivating proposal of a promising octa-functionalized porphyrin.
我们调查了超过 240000 个晶态单核过渡金属配合物(TMC),以确定在首选几何结构和金属配位方面的趋势。虽然我们观察到 d 填充水平的增加与配位数偏好的降低相关,但我们注意到例外情况,并观察到 4d/5d 过渡金属和 3p 配位配体的采样不足。对于三分之一的单核 TMC 是八面体的,对其配体环境的 67 个对称类的分析表明,配合物通常含有可去除的单齿配体,形成一个易于催化的开放位点。由于它们在催化中的应用,我们根据支持多个金属的能力和配位几何形状的可变性来分析四齿配体的配位趋势。我们确定了在结晶配合物中与不稳定的单齿配体共同存在的有前途的四齿配体,这些配体将导致反应性位点的形成。文献挖掘表明,这些配体作为催化剂尚未被开发利用,这促使我们提出了一种有前途的八官能化卟啉。