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Aryl derivatives carbon-boron bonds

The Suzuki coupling of aryl halides was also extended to tosylates recently. Benzothiazole 5-tosylate reacted with m-xylene-2-boronic acid (6.13.) to give the coupled product in 94% yield using palladium acetate and a stericly congested biphenyl based phosphine ligand as catalyst.17 Another class of less commonly utilised cross-coupling partners are methyltio derivatives. In the presence of a copper salt, which activates the carbon-sulphur bond, 2-methyltio-benzotiazol coupled readily with a series of arylboronic acids.18... [Pg.102]

Carboxylations of C-B and C-H bonds have been performed by copper(I)-NHC complexes in the presence of carbon dioxide. This reaction has been carried out on a range of aryl- and alkenyl-boronic derivatives as well as on alkylboranes. The C-H carboxyla-tion has been somehow restricted to the most acidic hydrogen of azoles and benzazoles. [Pg.175]

The reaction of heterocyclic lithium derivatives with organic halides to form a C-C bond has been discussed in Section 3.3.3.8.2. This cannot, however, be extended to aryl, alkenyl or heteroaryl halides in which the halogen is attached to an sp2 carbon. Such cross-coupling can be successfully achieved by nickel or palladium-catalyzed reaction of the unsaturated organohalide with a suitable heterocyclic metal derivative. The metal is usually zinc, magnesium, boron or tin occasionally lithium, mercury, copper, and silicon derivatives of thiophene have also found application in such reactions. In addition to this type, the Pd-catalyzed reaction of halogenated heterocycles with suitable alkenes and alkynes, usually referred to as the Heck reaction, is also discussed in this section. [Pg.362]

P.y-Unsaturated (allylic) boron derivatives (not alkyl-, aryl- and vinylboranes) readily react with organic compounds containing multiple bonds to form novel carbon-carbon bonds (Scheme 1). In the last 30 years, allylboration reactions have been widely used in organic synthesis.1... [Pg.450]

The Suzuki-Miyaura cross-coupling reaction is a standard method for carbon-carbon bond formation between an aryl halide or triflate and a boronic acid derivative, catalyzed by a palladium-metal complex. As with the Mizoroki-Heck reaction, this cross-coupling reaction has been developed in ionic liquids in order to recycle and reuse the catalyst. In 2000, the first cross-coupling of a halide derivative with phenylboronic acid in [bmim] [BF4] was described. As expected, the reaction proceeded much faster with bromobenzene and iodobenzene, whereas almost no biphenyl 91 was obtained using the chloride derivative (Scheme 36). The ionic liquid allowed the reactivity to be increased, with a turnover number between 72 and 78. Furthermore, the catalyst could be reused repeatedly without loss of activity, even when the reaction was performed under air. Cross-coupling with chlorobenzene was later achieved - although with only a moderate yield (42%) - using ultrasound activation. [Pg.43]

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 Aryl derivatives carbon-boron bonds is mentioned: [Pg.588]    [Pg.85]    [Pg.245]    [Pg.45]    [Pg.108]    [Pg.243]    [Pg.244]    [Pg.245]    [Pg.24]    [Pg.102]    [Pg.38]    [Pg.765]    [Pg.176]    [Pg.16]    [Pg.57]    [Pg.466]    [Pg.30]    [Pg.313]    [Pg.74]    [Pg.171]    [Pg.113]    [Pg.27]    [Pg.6]    [Pg.123]    [Pg.125]    [Pg.438]    [Pg.80]   
See also in sourсe #XX -- [ Pg.1115 ]




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Aryl Bonds

Aryl boronate

Aryl boronates

Aryl derivatives

Aryl derivs

Aryl-borons

Arylation derivatives

Bonded Derivatives

Bonding aryls

Boron aryls

Boron bonding

Boronate derivatives

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