School of Chemistry and Molecular Biosciences, University of Queensland, Brisbane, 4072, Australia.
Dalton Trans. 2021 Jan 19;50(2):612-623. doi: 10.1039/d0dt03204b.
The tetradentate N2S2 Schiff base ligands derived from condensing S-methyl or S-benzyl dithiocarbazate with acetylacetone have been found to be versatile chelators for copper and able to stabilise unusually high oxidation states. Herein we report their Ni coordination chemistry and a variety of products ensue depending on the reaction conditions. Unusual examples of linkage isomerism have been observed upon complexation with nickel acetate and these asymmetrically and symmetrically coordinated NiIIN2S2 complexes have been characterised both crystallographically and in solution by NMR. These compounds react rapidly with dioxygen and the ligands are particularly susceptible to oxidation which lead to various products including dinuclear NiII complexes derived from radical homocoupling reactions. These dinuclear NiII complexes are also redox active and spectroelectrochemistry has revealed new electronic transitions from their formally NiIII/NiII mixed valent state.
从 S-甲基或 S-苄基二硫代氨基甲酸盐与乙酰丙酮缩合得到的四齿 N2S2 席夫碱配体被发现是铜的多功能螯合剂,并能够稳定异常高的氧化态。在此,我们报告了它们的 Ni 配位化学,并且根据反应条件会产生各种产物。在与醋酸镍络合时观察到了链接异构的不寻常例子,这些不对称和对称配位的 NiIIN2S2 配合物通过 NMR 在晶体和溶液中都得到了表征。这些化合物与氧气快速反应,并且配体特别容易被氧化,这导致了包括来自自由基偶联反应的双核 NiII 配合物在内的各种产物。这些双核 NiII 配合物也是氧化还原活性的,光谱电化学揭示了它们来自形式上的 NiIII/NiII 混合价态的新电子跃迁。