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Oxidation palladium catalysis

The intramolecular arylation of sp3 C-H bonds is observed in the reaction of l-/ r/-butyl-2-iodobenzene under palladium catalysis (Equation (71)) 94 94a 94b The oxidative addition of Arl to Pd(0) gives an ArPdl species, which undergoes the electrophilic substitution at the tert-butyl group to afford the palladacycle. To this palladacycle, another molecule of Arl oxidatively adds, giving the Pd(iv) complex. [Pg.231]

With palladium catalysis, both 2,6-dichloropyrazine 3 and chloropyrazine N-oxide 5 were methylated using trimethylaluminum to give adducts 4 and 6, respectively [7,8]. [Pg.356]

The empirical observation that (—)-sparteine 55 is necessary for catalysis implicates a base-promoted pathway in the mechanism. In the first step, a palladium alk-oxide is formed after alcohol binding, followed by p-hydride elimination of the alkoxide to yield a ketone product. On the basis of a kinetic study of the enantio-selective oxidation of 1-phenylethanol, it was revealed that (—)-sparteine plays a dual role in the oxidative kinetic resolution of alcohols, as a ligand on palladium and an exogeneous base " ... [Pg.48]

The sole report of homogeneous palladium catalysis invoking vinylidene intermediates comes from the laboratory of Buono and coworkers [38]. They discovered a reaction unique to air-stable palladium catalysts 122, which form from the self-assembly of secondary phosphine oxides with Pd(II) (Equation 9.12). [Pg.303]

Scheme 3 Triple-catalysis strategy for aerobic palladium-catalyzed oxidation reactions... Scheme 3 Triple-catalysis strategy for aerobic palladium-catalyzed oxidation reactions...
Recently, Fu and coworkers have shown that secondary alkyl halides do not react under palladium catalysis since the oxidative addition is too slow. They have demonstrated that this lack of reactivity is mainly due to steric effects. Under iron catalysis, the coupling reaction is clearly less sensitive to such steric influences since cyclic and acyclic secondary alkyl bromides were used successfully. Such a difference could be explained by the mechanism proposed by Cahiez and coworkers (Figure 2). Contrary to Pd°, which reacts with alkyl halides according to a concerted oxidative addition mechanism, the iron-catalyzed reaction could involve a two-step monoelectronic transfer. [Pg.618]

Uses in Synthesis and Catalysis Table 6 Palladium-catalyzed Oxidation of Hydrocarbons Catalytic reaction Complex Nucleophile Refs. [Pg.362]

The synthetic applications of the palladium-catalyzed oxidation of alkenes to ketones have recently been reviewed.639 Improvements in the Wacker palladium-catalyzed ketonization of terminal alkenes have been obtained using phase-transfer catalysis,641 polyethylene glycol642 or phosphomolybdovanadic acids.643... [Pg.398]

The industrial synthesis of vinyl acetate [14] via palladium-catalyzed oxidative coupling of acetic acid and ethene using direct 02 reoxidation has already been mentioned (Scheme 3, d). Some NaOAc is required in the reaction medium, and catalysis by Pd clusters, as alternative to Pd(II) salts, was proposed to proceed with altered reaction characteristics [14]. Similarly, the alkenyl ester 37 (Table 5) containing an isolated vinyl group yields the expected enol acetate 38 [55] whereas allylphenol 39 cyclizes to benzofuran 40 with double bond isomerization [56]. [Pg.296]

Wang, C. M. Heller, A. Gerischer, H. Palladium catalysis of 02 reduction by electrons accumulated on Ti02 particles during photoassisted oxidation of organic compounds, J. Am Chem Soc. 1992, 114, 5230. [Pg.340]

Other unsaturated substrates arylated by various diaryl iodonium salts included butenone, acrylic acid, methyl acrylate and acrylonitrile [46]. Allyl alcohols with diaryliodonium bromides and palladium catalysis were arylated with concomitant oxidation for example, from oc-methylallyl alcohol, aldehydes of the general formula ArCH2CH(Me)CHO were formed [47]. Copper acetylide [48] and phenyl-acetylene [49] were also arylated, with palladium catalysis. [Pg.142]

Following the introduction to this volume provided herein, the following authors will continue the discussion of N-heterocyclic carbenes in this volume. Peris will discuss routes to NHC complexes, a prerequisite for doing catalysis. First and foremost, palladium catalysis has benefited from the use of NHC. The unique properties of NHC allow their use in oxidation catal-... [Pg.3]

The field of homogeneous palladium catalysis traces its origin to the development of the Wacker process in the late 1950s (Eq. 7) [83]. Since this discovery, palladium-catalyzed reactions have evolved into some of the most versatile reactions for the synthesis of organic molecules [84,85]. Palladium-catalyzed Wacker-type oxidation of alkenes continues to be an active field of research [86-88], and several recent applications of NHC-coordinated Pd catalysts have been reported for such reactions. [Pg.38]

Very few examples of the oxidation of olefins to ketones in ionic liquids have been reported. In one case, [C4Ciim][BF4] or [C4Ciim][PF6] were used in the palladium-catalysed oxidation of styrene to acetophenone with H2O2 as oxidant, however the concept of biphasic catalysis was not exploited and no attempts were made to recycle the catalyst.[131 The ionic liquid serves the purpose of a co-catalyst rather than that of a reaction medium. [Pg.108]

Previous preparations by Scolastico were based on the Strecker synthesis of aminonitrile and lacked steroselectivity [74,75]. More recently, two formal syntheses were reported from the same ketone 71. In Rama Rao s synthesis (Scheme 11.19) [76], 71 was condensed with vinyl magnesium bromide to give the tertiary alcohol 72 as a single isomer. This compound was then transformed into the vinyl epoxide 73 that, under palladium catalysis, reacted with 4-methoxyphenyl isocyanate to produce the oxazohdinone 74 with retention of its configuration. The remainder of the synthesis consisted of heterocycle opening and adjustment of the oxidation level to provide the lactone 75. Excision of two carbons was necessary to form the known aldehyde 76, previously transformed into myriocin [74]. [Pg.516]

Henry, P. M. Catalysis hy Metal Complexes, Vol. 2 Palladium Catalyzed Oxidation of Hydrocarbons ed. Reidel, D.) (Dordrecht, Holland, 1980)41. [Pg.702]

The good availability of pyridazin-3(2/T)-ones make triflate esters preferred substrates to access bond formation via palladium catalysis. It avoids the use of POCI3, PCI5, POBr3, or PIh which are often used as reagent and solvent (see Section 13.1.4). Moreover, triflate esters are more reactive towards oxidative addition than the corresponding bromo and chloro derivatives. Pyridazin-(3(2//)-on)e triflates are air stable compounds that can be stored in the cold without decomposition. [Pg.546]


See other pages where Oxidation palladium catalysis is mentioned: [Pg.168]    [Pg.1587]    [Pg.710]    [Pg.218]    [Pg.31]    [Pg.110]    [Pg.1196]    [Pg.27]    [Pg.29]    [Pg.212]    [Pg.340]    [Pg.14]    [Pg.184]    [Pg.1774]    [Pg.543]    [Pg.709]    [Pg.452]    [Pg.452]    [Pg.102]    [Pg.599]   
See also in sourсe #XX -- [ Pg.205 ]

See also in sourсe #XX -- [ Pg.139 ]

See also in sourсe #XX -- [ Pg.100 ]




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Oxidation catalysis

Oxidation palladium

Oxidative addition palladium catalysis

Oxides catalysis

Palladium Catalysis for Oxidative 1,2-Difunctionalization of Alkenes

Palladium catalysis

Palladium catalysis aerobic oxidation

Palladium catalysis arylation/oxidation

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Synthesis oxidation, palladium catalysis

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