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Acetophenone palladium enolate

Various examples of both C- and O-bound tautomers were described for enolates of palladium, and the corresponding complexes were characterized. In addition, both bonding modes were postulated as intermediate palladium enolates in catalyses. For a palladium(II) enolate of acetophenone, the monomeric C-bound form 40, and the dimer 41 were characterized by crystal structure analyses. In both complexes, palladium is tetra-coordinated in a distorted square planar arrangement [75aj. Similarly, palladium enolates derived from acetic esters were isolated and characterized under the form of monomeric enolate 42 as well as bimetallic complex 43 [75b]. The dimeric complexes 41 and 43 feature the structural motif of an C,0-bridging enolate moiety (Scheme 3.14). [Pg.105]

An interesting reaction between the bis phenyl iodonium triflate of acetylene and the silyl enol ether of acetophenone afforded an allene (PhCOCH=C=C=CHCOPh, 84%) [6], Also, alkynyl iodonium tosylates and carbon monoxide in methanol or ethanol, with palladium catalysis, furnished alkyne carboxylates [53]. [Pg.168]

Cationic Pd complexes can be applied to the asymmetric aldol reaction. Shibasaki and coworkers reported that (/ )-BINAP PdCP, generated from a 1 1 mixture of (i )-BINAP PdCl2 and AgOTf in wet DMF, is an effective chiral catalyst for asymmetric aldol addition of silyl enol ethers to aldehydes [63]. For instance, treatment of trimethylsi-lyl enol ether of acetophenone 49 with benzaldehyde under the influence of 5 mol % of this catalyst affords the trimethylsilyl ether of aldol adduct 113 (87 % yield, 71 % ee) and desilylated product 114 (9 % yield, 73 % ee) as shown in Sch. 31. They later prepared chiral palladium diaquo complexes 115 and 116 from (7 )-BINAP PdCl2 and (i )-p-Tol-BINAP PdCl2, respectively, by reaction with 2 equiv. AgBF4 in wet acetone [64]. These complexes are tolerant of air and moisture, and afford similar reactivity and enantioselec-tivity in the aldol condensation of 49 and benzaldehyde. Sodeoka and coworkers have recently developed enantioselective Mannich-type reactions of silyl enol ethers with imi-nes catalyzed by binuclear -hydroxo palladium(II) complexes 117 and 118 derived from the diaquo complexes 115 and 116 [65]. These reactions are believed to proceed via a chiral palladium(fl) enolate. [Pg.593]

We mentioned that by mixing vinyl epoxides and zerovalent palladium, the alcoholate formed was usually sufficiently basic to deprotonate the pronucleophile entity. In some cases, especially with ketones, low reactivity and yields were reported (Table To overcome the problem of the weak basicity of the alcoholate, silyl enol ethers, keto adds, or preformed lithium enolates have successfully been employed.f f" f f /3-Keto acids are masked enolates via the decarboxylation of the intermediary Tr-allylpalladium ]3-ketocarboxylate complexes. The main limitation of the use of keto adds as pronucleophiles seems to be their low reactivity toward the hindered cyclic vinyl epoxides. In these cases, the cationic n-allylpalladium complex undergoes ]S-elimination. Indeed, the reaction between benzoyl acetic acid and cyclobutadiene monoxide in the presence of Pd(PPh3>4 gives only the corresponding cyclopentanone and acetophenone as the... [Pg.166]

Transmetallation is also a highly important concept to obtain enolates of the late transition metals rhodium, palladium, and nickel, not only for their preparation and isolation, but also for their intermediate generation in catalytic cycles. When 2 equiv. of the potassium enolates 166 of acetophenone and pinacolone... [Pg.65]


See other pages where Acetophenone palladium enolate is mentioned: [Pg.628]    [Pg.195]    [Pg.68]   
See also in sourсe #XX -- [ Pg.105 ]




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