| Literature DB >> 33440755 |
Yan Z Voloshin1,2, Semyon V Dudkin1, Svetlana A Belova1, Daniel Gherca3, Dumitru Samohvalov3, Corina-Mihaela Manta3, Maria-Andreea Lungan3, Samuel M Meier-Menches4, Peter Rapta5, Denisa Darvasiová5, Michal Malček5, Armando J L Pombeiro6, Luísa M D R S Martins6, Vladimir B Arion7.
Abstract
The in situ spectroelectrochemical cyclic voltammetric studies of the antimony-monocapped nickel(II) and iron(II) tris-pyridineoximates with a labile triethylantimony cross-linking group and Zr(IV)/Hf(IV) phthalocyaninate complexes were performed in order to understand the nature of the redox events in the molecules of heterodinuclear zirconium(IV) and hafnium(IV) phthalocyaninate-capped derivatives. Electronic structures of their 1e-oxidized and 1e-electron-reduced forms were experimentally studied by electron paramagnetic resonance (EPR) spectroscopy and UV-vis-near-IR spectroelectrochemical experiments and supported by density functional theory (DFT) calculations. The investigated hybrid molecular systems that combine a transition metal (pseudo)clathrochelate and a Zr/Hf-phthalocyaninate moiety exhibit quite rich redox activity both in the cathodic and in the anodic region. These binuclear compounds and their precursors were tested as potential catalysts in oxidation reactions of cyclohexane and the results are discussed.Entities:
Keywords: DFT calculations; clathrochelates; hafnium(IV); homogeneous catalysis; iron(II); nickel(II); oxidation reactions; phthalocyanines; spectroelectrochemistry; zirconium(IV)
Year: 2021 PMID: 33440755 DOI: 10.3390/molecules26020336
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411