Dipartimento di Chimica, Materiali e Ingegneria Chimica, Politecnico di Milano, Via Luigi Mancinelli, 7, 20131, Milano, Italy.
Dalton Trans. 2020 May 14;49(18):5965-5973. doi: 10.1039/d0dt00799d. Epub 2020 Apr 21.
Pyridine-based bispidine ligands L1-L7, which differ in the substituent at the N7 position of the bispidine scaffold, have been studied by single crystal X-ray diffraction and density functional theory (DFT) calculations, also including solid-state algorithms. Qualitative description of the packing interactions and quantitative data on the stability of each ligand in the solid-state have been employed to draw reasonable predictions on the ligand potential for the formation of linear 1D coordination polymers (CPs) with Mn(ii)Cl and on their resulting dynamic properties, in terms of adsorption and solvent exchange capabilities. The basic assumption lies in the fact that volume and polarizability of the ligands would similarly affect packing energies in both molecular solids and CP materials. The results here obtained confirm the data previously reported on CPs (those made from L4 are less dynamic than the ones with L1), but they also allow the prediction that CPs made with L2 and L5 should be more dynamic than expected, while CPs with L6 and L7 should not form altogether. This latter prediction was derived from the analysis of the steric and electronic factors of the ligand substituents on the N7 position and it is further substantiated by the obtainment of a 2 : 1 molecular complex, and not a CP, by crystallization of L6 with MnCl.
基于吡啶的双齿配体 L1-L7,其双齿支架 N7 位置的取代基不同,通过单晶 X 射线衍射和密度泛函理论(DFT)计算进行了研究,还包括固态算法。采用定性描述堆积相互作用和每个配体在固态中稳定性的定量数据,对配体与 Mn(ii)Cl 形成线性 1D 配位聚合物(CPs)的潜力及其吸附和溶剂交换能力的动态特性进行了合理预测。基本假设在于配体的体积和极化率在分子固体和 CP 材料中同样会影响堆积能。这里得到的结果证实了以前关于 CPs 的报道数据(由 L4 制成的 CPs 比由 L1 制成的 CPs 动态性差),但它们还允许预测 L2 和 L5 制成的 CPs 应该比预期更具动态性,而 L6 和 L7 制成的 CPs 则不应完全形成。这一预测是基于对配体 N7 位置取代基的空间和电子因素的分析得出的,并且通过 L6 与 MnCl 的结晶得到 2:1 分子复合物而不是 CPs 进一步证实了这一点。