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Heck reaction allylic/arylic derivatives

Blaser and Spencer used aroyl halides in place of aryl halides, with aroyl chlorides being of specific interest as ubiquitous, relatively cheap compounds ( Blaser reaction ) [24], This latter reaction is normally conducted in aromatic solvents phosphines are not used here as catalyst ligands since they fully inhibit the reaction. In the same way, benzoic acid anhydrides can be used as the aryl source in combination with PdCl2 and catalytic amounts of NaBr [79]. In this reaction, one of the arenes is used in the coupling reaction by elimination of CO, whereas the other benzoate serves as the base. The benzoic acid thus formed can easily be recycled into the anhydride. The use of aryl and vinyl triflates according to Cacchi [25] and Stille [26] extends the scope of the Heck coupling to carbonyl compounds phenol derivatives act via triflate functionalization as synthetic equivalents of the aryl halides. The arylation of cyclic alkenes [27], electron-rich vinyl ethers [28], and allylic alcohols [29] is accessible through Heck reactions. Allylic alcohols yield C-C-saturated carbonyl compounds (aldehydes) for mechanistic reasons (y9-H elimination), as exemplified in eq. (6). [Pg.779]

Heck reactions with aUyUc derivatives as substrates are presented in entries 27 and 28. In the absence of T1(I) or Ag(I) salts and under Jeffery conditions, arylation of allylic alcohols provides a useful highly regioselective direct route to arylethyl ketones. ... [Pg.1169]

Prior chapters have covered the use of transition metals in asymmetric hydrogenations ( 6.2 and 7.1), hydroborations ( 7.3), hydrosilylations and hydro-cyanations ( 6.3, 6.4, 7.4 and 7.5), cyclopropanations ( 7.19), aldol reactions ( 6.11), allylations of carbanions ( 5.3.2), and some sigmatropic rearrangements ( 10.3). This chapter covers other reactions catalyzed by transition metal complexes including coupling of organometallic reagents with vinyl, aryl or allyl derivatives, Heck reactions allylamine isomerizations, some allylation reactions, car-bene insertions into C-H bonds and Pauson-Khand reactions. [Pg.619]

One of the most important transformations catalysed by palladium is the Heck reaction. Oxidative addition of palladium(O) into an unsaturated halide (or tri-flate), followed by reaction with an alkene, leads to overall substitution of a vinylic (or allylic) hydrogen atom with the unsaturated group. For example, formation of cinnamic acid derivatives from aromatic halides and acrylic acid or acrylate esters is possible (1.209). Unsaturated iodides react faster than the corresponding bromides and do not require a phosphine ligand. With an aryl bromide, the ligand tri-o-tolylphosphine is effective (1.210). The addition of a metal halide or tetra-alkylammonium halide can promote the Heck reaction. Acceleration of the coupling can also be achieved in the presence of silver(I) or thallium(I) salts, or by using electron-rich phosphines such as tri-tert-butylphosphine. ... [Pg.94]

Oxidative Heck reactions via Pd(II) C—H functionalization of terminal alkenes with pinacol boranes have been described for the preparation of styrenes and derivatives through electrophilic Pd(II) catalysis (Scheme 3.20). ° Treatment of a functionalized allylic precursor with the Pd(II) catalysts listed facilitated an allylic C—H activation. Subsequent transmetallation of the aryl boronic acid and reductive elimination afforded the desired olefin with excellent stereoselectivity. The scope of the transformation allows for a variety of activating and deactivating substituents on the aryl boronic acid as well as numerous functional groups on the starting alkene. A tandem allylic C—H oxidation/vinylic arylation protocol has also been reported. " ... [Pg.72]

Condensation of resin bound ketones with hydrazines followed by cyclizative cleavage was used in a synthesis of pyrazolinones [67]. Samarium iodide induced radical cyclization of allyl aryl ethers led to benzofuran derivatives [68]. Kurth et al. have reported a two reaction iterative process for the construction of polyisoxazolines [69] and polyisoxazoles [70]. An intramolecular Heck reaction has been employed to prepare 2-oxindole derivatives [71]. [Pg.20]

The use of 1,2-dihaloarenes has been a key component of several recent annulation reactions that afford nitrogen heterocycles [274—276]. For example, indoles were prepared via a tandem amination/Heck reaction sequence between allylic amines and o-bromoiodobenzene derivatives (Eq. 48) [277]. A synthesis of heterocycles bearing three or more nitrogen atoms has been developed that proceeds via intermo-lecular A-arylation of a 3-aminopyridazine followed by intramolecular A-arylation of the resulting product (Eq. 49) [278]. This latter strategy has also been apphed to the constmction of other nitrogen-containing heterocycles [279]. [Pg.24]

One distinguishes palladium(0)- and palladium(ll)-catalysed reactions. The most common palladium(O) transformations are the Mizoroki-Heck and the cross-coupling transformations such as the Suzuki-Miyaura, the Stille and the Sonogashira reactions, which allow the arylation or alkenylation of C=C double bonds, boronic acid derivates, stan-nanes and alkynes respectively [2]. Another important palladium(O) transformation is the nucleophilic substitution of usually allylic acetates or carbonates known as the Tsuji-Trost reaction [3]. The most versatile palladium(ll)-catalysed transformation is the Wacker oxidation, which is industrially used for the synthesis of acetaldehyde from ethylene [4]. It should be noted that many of these palladium-catalysed transformations can also be performed in an enantioselective way [5]. [Pg.282]


See other pages where Heck reaction allylic/arylic derivatives is mentioned: [Pg.228]    [Pg.1336]    [Pg.95]    [Pg.95]    [Pg.532]    [Pg.809]    [Pg.281]    [Pg.95]    [Pg.196]    [Pg.655]    [Pg.1150]    [Pg.1]    [Pg.148]    [Pg.274]    [Pg.1346]    [Pg.1150]    [Pg.187]    [Pg.18]    [Pg.294]    [Pg.492]    [Pg.8]    [Pg.163]    [Pg.229]    [Pg.56]    [Pg.98]    [Pg.20]    [Pg.369]   
See also in sourсe #XX -- [ Pg.1263 ]




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5-Allyl-derivatives

Allylic derivatives

Allylic derivatives reactions

Aryl Heck reaction

Aryl derivatives

Aryl derivs

Arylation Heck reaction

Arylation derivatives

Heck arylation

Heck arylations

Heck derivative

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