Bonding modes in palladium(II) enolates: Consequences for dynamic behaviorand reactivity

Citation
Ac. Albeniz et al., Bonding modes in palladium(II) enolates: Consequences for dynamic behaviorand reactivity, ORGANOMETAL, 18(26), 1999, pp. 5571-5576
Citations number
24
Categorie Soggetti
Organic Chemistry/Polymer Science
Journal title
ORGANOMETALLICS
ISSN journal
02767333 → ACNP
Volume
18
Issue
26
Year of publication
1999
Pages
5571 - 5576
Database
ISI
SICI code
0276-7333(199912)18:26<5571:BMIPEC>2.0.ZU;2-2
Abstract
The behavior of palladium C-bound enolates [Pd(CH2C(O)CR3)Cl(PPh3)(2)] (R = H, 1; R = Me, 2) and [Pd(CH2C(O)CR3)(PPh3)(2)(NCMe)](BF4) (R = H, 5; R = M e, 6) has been studied. Dimeric-species with bridging enolate moieties are formed in solution when a coordination site on the metal is made available, either with Pd-2{mu-kappa(2)-C,O-CH2C(O)CR3}(2) or with mixed Pd-2{mu-kapp a(2)-C, O-CH2C(O)CR3}(mu-X) (X = Cl, OH) bridges. It is proposed that pi ba ck-donation is important to stabilize oxygen banding. Complexes 1 and 2 und ergo exchange between free and coordinated phosphine in solution. Kinetic e xperiments support an intramolecular associative mechanism which could invo lve an oxoallyl-like transition state. The reactivity of the complexes has been explored. Some reactions typical of Pd-alkyls have been observed such as insertion of CO to give CR3C(O)CH2COOH, Electrophilic attack on oxygen i s very important: the hydrolysis of the enolate complexes has been studied and also the reaction with ClSiMe3 to give silyl enol ethers.