Institute for Molecules and Materials, Radboud University, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.
Inorg Chem. 2023 Jan 30;62(4):1728-1734. doi: 10.1021/acs.inorgchem.2c04260. Epub 2023 Jan 19.
Cobalt(III)peroxo complexes serve as model metal complexes mediating oxygen activation. We report a systematic study of the effect of hydrogen bonding on the O binding energy and the O-O bond activation within the cobalt(III)peroxo complexes. To this end, we prepared a series of tris(pyridin-2-ylmethyl)amine-based cobalt(III)peroxo complexes having either none, one, two, or three amino groups in the secondary coordination sphere. The hydrogen bonding between the amino group(s) and the peroxo ligand was investigated within the isolated complexes in the gas phase using helium tagging infrared photodissociation spectroscopy, energy-resolved collision-induced dissociation experiments, and density functional theory. The results show that the hydrogen bonding stabilizes the cobalt(III)peroxo core, but the effect is only 10-20 kJ mol. Introducing the first amino group to the secondary coordination sphere has the largest stabilization effect; more amino groups do not change the results significantly. The amino group can transfer a hydrogen atom to the peroxo ligands, which results in the O-O bond cleavage. This process is thermodynamically favored over the O elimination but entropically disfavored.
钴(III)过氧配合物可作为介导氧活化的模型金属配合物。我们报告了一项关于氢键对钴(III)过氧配合物中 O 结合能和 O-O 键活化影响的系统研究。为此,我们制备了一系列具有不同次级配位球中无、一、二或三个氨基的三(吡啶-2-基甲基)胺基钴(III)过氧配合物。使用氦标记红外光解光谱、能量分辨碰撞诱导解离实验和密度泛函理论,在气相中研究了氨基(s)与过氧配体之间的氢键。结果表明,氢键稳定了钴(III)过氧核,但影响仅为 10-20 kJ mol。将第一个氨基引入次级配位球具有最大的稳定化效果;更多的氨基不会显著改变结果。氨基可以向过氧配体转移一个氢原子,导致 O-O 键断裂。这个过程在热力学上有利于 O 消除,但在熵上不利。