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Aryl-alkenyl cross-coupling

The cis thioboration of terminal alkynes with 9-(arylthio)-9-BBN is catalyzed by Pd(Pli3P)4 in the presence of styrene. The product 136 is converted into the vinyl sulfides 137 and 138 by the treatment with MeOH or by Pd-catalyzed cross-coupling with aryl or alkenyl halides using K3PO4 in DMF[68]. No thioboration takes place with internal alkynes. [Pg.488]

Polymerization using the Stille coupling, the cross-coupling of aryl-alkenyl halides with organotins in the presence of palladium catalysts (Scheme 9.10),13 appeared in 1989 (Scheme 9.11).14 The low nucleophilicity of organotins makes it possible to use functionalized monomers for the polymerization.15... [Pg.470]

Tributylstannyl)-3-cyclobutene-1,2-diones and 4-methyl-3-(tributylstan-nyl)-3-cyclobutene-l,2-dione 2-ethylene acetals undergo the palladium/copper-catalyzed cross coupling with acyl halides, and palladium-catalyzed carbon-ylative cross coupling with aryl/heteroaryl iodides [45]. The coupling reaction of alkenyl (phenyl )iodonium triflates is also performed by a palladium/copper catalyst [46],... [Pg.121]

Lithium triethyl(l-methylindolyl-2)borate has been introduced as a convenient source of indolyl residue for carbonylative cross-coupling with aryl iodides, alkenyl iodides, or triflates. The reaction requires elevated CO pressure and high loading of catalyst (5mol.%) (Equation (15)). Aryl and alkenyl bromides, as well as aryl iodides... [Pg.416]

Various aryl, alkenyl and even alkylborane reagents of different reactivity can be used for coupling with aryl, alkenyl, alkynyl and some alkyl halides, offering very useful synthetic methods. The cross-coupling of aryl and heteroarylboronic acids with aryl and heterocyclic halides and triflates provide useful synthetic routes to various aromatic and heteroaromatic derivatives. Sometimes, the reaction proceeds in the... [Pg.63]

The Reformatsky reagents, i.e. zinc enolates of esters, undergo Ni catalysed cross-coupling with aryl halides.53 The Ni catalysed reaction of arylzincs with a-bromoacetates also permits a-arylation of esters54 (Scheme 11.13). However, a-alkenylation of enolates of ketones, aldehydes, and esters has been less satisfactory. Its further development is clearly desirable. Alternatively, a-alkenylation of a-iodoenones in conjunction with conjugate reduction discussed earlier should be considered. [Pg.231]

The insight that zinc ester enolates can be prepared prior to the addition of the electrophile has largely expanded the scope of the Reformatsky reaction.1-3 Substrates such as azomethines that quaternize in the presence of a-halo-esters do react without incident under these two-step conditions.23 The same holds true for acyl halides which readily decompose on exposure to zinc dust, but react properly with preformed zinc ester enolates in the presence of catalytic amounts of Pd(0) complexes.24 Alkylations of Reformatsky reagents are usually difficult to achieve and proceed only with the most reactive agents such as methyl iodide or benzyl halides.25 However, zinc ester enolates can be cross-coupled with aryl- and alkenyl halides or -triflates, respectively, in the presence of transition metal catalysts in a Negishi-type reaction.26 Table 14.2 compiles a few selected examples of Reformatsky reactions with electrophiles other than aldehydes or ketones.27... [Pg.293]

Imidazole zinc reagent 372 was made from 2-iodoimidazole 371 with activated zinc dust. The organozinc reagent was cross-coupled with aryl iodides and alkenyl iodides, in good yields (Scheme 88), <1997T7237>. [Pg.206]

As described above (Section 5.2), the Stephens-Castro reaction of alkynylcopper with aryl and vinyl halides in boiling pyridine is a useful route to aryl and vinyl acetylenes. Direct cross-coupling of organic halides, such as sp halides, with terminal alkynes is a more convenient procedure. Such a reaction is not so easy, but it can be done using a Pd-complex catalyst [41]. Especially facile Pd-catalyzed cross-coupling of aryl and alkenyl halides with terminal alkynes proceeds smoothly under mild conditions in the presence of a cocatalyst of cuprous iodide in amine solvents [Eq. (28)] [42]. This methodology is now used widely for the constiuction of conjugated arylalkyne or enyne systems [43], as described below. It is attractive from a synthetic point of view because mild reaction conditions and simplicity of the procedure are associated with recent developments in modem acetylene chemistry [44]. [Pg.388]

J. Cross couplings of aryl or alkenyl halides with TMSA proceeds in the presence of a Pd catalyst and Cul, followed by treatment with dilute aqueous KOH [54a] or K2CO3 in MeOH or a source of fluorine, such as KF, KF-crown ether, TASF, or Bu4NF to give terminal acetylenes [43a]. [Pg.390]

Recently, direct synthesis of terminal acetylenes via Pd-catalyzed cross-coupling of aryl or alkenyl halides with ethynylmetals was developed by Negishi and co-workers (Section ni.2.8.2). ... [Pg.516]

TABLE 3. Pd-Catalyzed Cross-Coupling of Aryl and Alkenyl Electrophiles with Alkynylmetals Containing Mg and Zn... [Pg.540]


See other pages where Aryl-alkenyl cross-coupling is mentioned: [Pg.224]    [Pg.240]    [Pg.478]    [Pg.187]    [Pg.316]    [Pg.350]    [Pg.90]    [Pg.12]    [Pg.412]    [Pg.414]    [Pg.417]    [Pg.119]    [Pg.127]    [Pg.749]    [Pg.293]    [Pg.56]    [Pg.51]    [Pg.5649]    [Pg.294]    [Pg.730]    [Pg.230]    [Pg.231]    [Pg.840]    [Pg.401]    [Pg.26]    [Pg.5648]    [Pg.168]   
See also in sourсe #XX -- [ Pg.218 ]




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Alkenyl-aryl coupling

Alkenyl-aryl cross-coupling alkylation

Alkenyl-aryl cross-coupling natural products synthesis

Aryl coupling

Aryl cross-coupling

Aryl-alkenyl cross-coupling examples

Aryl-alkenyl cross-coupling scope

Aryl-alkenyl cross-coupling, palladium-catalyzed

Aryl-alkenyl cross-coupling, palladium-catalyzed examples

Aryl-alkenyl cross-coupling, palladium-catalyzed reactions

Aryl-alkenyl cross-coupling, palladium-catalyzed scope

Cross-coupling reactions alkenyl-aryl

Cross-coupling reactions with alkynyl, alkenyl, and aryl halides

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