Oliveri Ivan Pietro, Forte Giuseppe, Consiglio Giuseppe, Failla Salvatore, Di Bella Santo
Dipartimento di Scienze Chimiche and ‡Dipartimento di Scienze del Farmaco, Università di Catania , I-95125 Catania, Italy.
Inorg Chem. 2017 Nov 20;56(22):14206-14213. doi: 10.1021/acs.inorgchem.7b02341. Epub 2017 Nov 7.
Molecular aggregation of bis(salicylaldiminato) Zn Schiff base, ZnL, complexes is a topic of current interest. In this paper, we report a novel complex derived from the enantiopure trans-1,2-cyclopentanediamine, (R)-1, in order to probe the effect of the defined stereochemistry on its coordination geometry and aggregation properties, through detailed H NMR, DOSY NMR, UV/vis, and circular dichroism spectroscopic studies and accurate DFT calculations. This complex shows several peculiarities in solution, behaving very differently from ZnL complexes and more importantly from the related trans-1,2-diaminocyclohexane derivative. Unexpectedly, experimental data suggest the existence in DMSO of two species in equilibrium, the classical monomeric adduct and a dimer, indicating that the DMSO is not sufficiently strong Lewis basic to completely deaggregate the complex. Also, in chloroform an unusual behavior is observed with the existence of a single defined dimeric species characterized as a dinuclear double helicate ZnL structure which does not deaggregate even with the addition of pyridine in large stoichiometric excess. The formation of mononuclear adducts occurs only when dissolving the complex in the stronger Lewis base pyridine. All these data indicate the helicate (R)-1-h complex has a higher thermodynamic stability than that of the cyclohexane analogue, leading to its unique aggregation properties.
双(水杨醛亚胺基)锌席夫碱配合物(ZnL)的分子聚集是当前备受关注的一个话题。在本文中,我们报道了一种源自对映体纯的反式-1,2-环戊二胺((R)-1)的新型配合物,旨在通过详细的¹H NMR、DOSY NMR、紫外/可见光谱和圆二色光谱研究以及精确的密度泛函理论(DFT)计算,探究特定立体化学对其配位几何结构和聚集性质的影响。该配合物在溶液中表现出几个独特之处,其行为与ZnL配合物有很大不同,更重要的是与相关的反式-1,2-二氨基环己烷衍生物不同。出乎意料的是,实验数据表明在二甲亚砜(DMSO)中存在两种处于平衡状态的物种,即经典的单体加合物和二聚体,这表明DMSO作为路易斯碱的强度不足以使配合物完全解聚。此外,在氯仿中观察到一种不寻常的行为,存在一种单一的特定二聚体物种,其特征为双核双螺旋ZnL结构,即使加入大量化学计量过量的吡啶也不会解聚。只有当将配合物溶解在更强的路易斯碱吡啶中时才会形成单核加合物。所有这些数据表明螺旋状的(R)-1-h配合物比环己烷类似物具有更高的热力学稳定性,从而导致其独特的聚集性质。