| Literature DB >> 32648996 |
Stephan Ludwig1, Kai Helmdach1, Mareike Hüttenschmidt1, Elisabeth Oberem2, Jabor Rabeah3, Alexander Villinger1, Ralf Ludwig2, Wolfram W Seidel1.
Abstract
A pair of diastereomeric dinuclear complexes, [Tp'(CO)BrW{μ-η2 -C,C'-κ2 -S,P-C2 (PPh2 )S}Ru(η5 -C5 H5 )(PPh3 )], in which W and Ru are bridged by a phosphinyl(thiolato)alkyne in a side-on carbon P,S-chelate coordination mode, were synthesized, separated and fully characterized. Even though the isomers are similar in their spectroscopic properties and redox potentials, the like-isomer is oxidized at W while the unlike-isomer is oxidized at Ru, which is proven by IR, NIR and EPR-spectroscopy supported by spectro-electrochemistry and computational methods. The second oxidation of the complexes was shown to take place at the metal left unaffected in the first redox step. Finally, the tipping point could be realized in the unlike isomer of the electronically tuned thiophenolate congener [Tp'(CO)(PhS)W{μ-η2 -C,C'-κ2 -S,P-C2 (PPh2 )S}Ru(η5 -C5 H5 )-(PPh3 )], in which valence trapped WIII /RuII and WII /RuIII cationic species are at equilibrium.Entities:
Keywords: alkyne ligands; bridging ligands; redox chemistry; redox isomerism; regioselectivity
Year: 2020 PMID: 32648996 DOI: 10.1002/chem.202003120
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236