The half-sandwich 18- and 16-electron arene ruthenium iminophosphonamide complexes

Novel half-sandwich 18ē and 16ē arene ruthenium iminophosphonamide complexes [(η -C Me )RuCl{(R'N) PR }] (3a-c) and [(η -C Me )Ru{(R'N) PR }] (X ) (4a-c) (a, R = Ph, R' = p-Tol; b, R = Et, R' = p-Tol; c, R = Ph, R' = Me. X = BF , PF or BAr ) were synthesized. The elongated R...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2016-01, Vol.45 (42), p.17030-17041
Hauptverfasser: Peganova, Tat'yana A, Sinopalnikova, Iana S, Peregudov, Alexander S, Fedyanin, Ivan V, Demonceau, Albert, Ustynyuk, Nikolai A, Kalsin, Alexander M
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Sprache:eng
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Zusammenfassung:Novel half-sandwich 18ē and 16ē arene ruthenium iminophosphonamide complexes [(η -C Me )RuCl{(R'N) PR }] (3a-c) and [(η -C Me )Ru{(R'N) PR }] (X ) (4a-c) (a, R = Ph, R' = p-Tol; b, R = Et, R' = p-Tol; c, R = Ph, R' = Me. X = BF , PF or BAr ) were synthesized. The elongated Ru-Cl bond in the 18ē complexes is shown to dissociate even in apolar solvents to form the corresponding 16ē cations, which can be readily isolated as salts with non-coordinating anions. The coordinatively unsaturated 16ē complexes are stable species due to efficient π-electron donation from the nitrogen atoms of the zwitterionic NPN-ligand. The ruthenium iminophosphonamides are moderately active in the ROMP polymerization of norbornene; the 16ē complexes 4a,b yield high molecular weight polymers (M ∼ 300 × 10 ) with a narrow distribution M /M ∼ 1.6, while the 18ē complexes 3a,b give polymers of lower molecular weight (M < 50 × 10 ) with a wider polydispersity index M /M ∼ 2.5.
ISSN:1477-9226
1477-9234
DOI:10.1039/c6dt03202h