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Aryl coupling

The alkaloid dubamine contains a single bond between the two heteroarene units. This lond was formed in 79% yield by the generally valuable palladium-catalyzed eoupling of an ryltrimethylstannane with an aryl triflate (see section 1.6). The requisite stannane was pre-ared from l,3-benzodioxol-5-yl triflate and hexamethyldistannane with the same palladium atalyst, the triflate ester was obtained from 2(1 f/)-quinolinone and trifluoromethanesulfonic jihydride (A.M. Echavarren, 1987). An earlier attempt to perform this aryl coupling by dassical means gave a yield of only 1 %. [Pg.295]

The oxidative coupling of toluene using Pd(OAc)2 via />-tolylmercury(II) acetate (428) forms bitolyl[384]. The aryl-aryl coupling proceeds with copper and a catalytic amount of PdCl2 in pyridine[385]. Conjugated dienes are obtained by the coupling of alkenylmercury(II) chlorides[386]. [Pg.82]

These aryl—aryl couplings are appHcations of the Ni(0) and Ni(II)-cataly2ed cross-couplings of unreactive organic haUdes with Grignard reagents. This work has been extensively reviewed (90). [Pg.397]

In addition to sodium, other metals have found application for the Wurtz coupling reaction, e.g. zinc, iron, copper, lithium, magnesium. The use of ultrasound can have positive effect on reactivity as well as rate and yield of this two-phase reaction aryl halides can then even undergo an aryl-aryl coupling reaction to yield biaryls. ... [Pg.305]

In a classical multi-step route the critical point is to conduct (he ring closure quantitatively and regioseleclively. In the synthesis of I.PPP, the precursor polymer 13 is initially prepared in an aryl-aryl coupling from an aromatic diboronic acid and an aromatic dibromoketone. [Pg.351]

Numerous entries to the preparation of structurally well-defined PPPs have evolved based on a variety of synthetic principles. The availability of newer, more effective methods for aryl-aryl coupling has been an important driving... [Pg.166]

The synthetic route represents a classical ladder polymer synthesis a suitably substituted, open-chain precursor polymer is cyclized to a band structure in a polymer-analogous fashion. The first step here, formation of the polymeric, open-chain precursor structure, is AA-type coupling of a 2,5-dibromo-1,4-dibenzoyl-benzene derivative, by a Yamamoto-type aryl-aryl coupling. The reagent employed for dehalogenation, the nickel(0)/l,5-cyclooctadiene complex (Ni(COD)2), was used in stoichiometric amounts with co-reagents (2,2 -bipyridine and 1,5-cyclooctadiene), in dimethylacetamide or dimethylformamide as solvent. [Pg.216]

The synthesis of 1-alkenylboronic acids from l-alkenylmagnesiums or -lithiums suffers from difficulty in retaining the stereochemistry of 1-aikenyl halides, but the palladium-catalyzed coupling reaction of diboron 82 with 1-aikenyl halides or tri-flates directly provides 1-alkenylboronic esters (Scheme 1-43) [157, 158]. Although the reaction conditions applied to the aryl coupling resulted in the formation of an... [Pg.37]

Cravotto G, Beggiato M, Penoni A, Palmisano G, Tollari S, Leveque J-M, Bonrath W (2005) High-intensity ultrasound and microwave alone or combined, promote Pd/C-catalyzed aryl-aryl couplings. Tetrahedr Lett 46 2267-2271... [Pg.67]

Although the copper mediated Ullmann reaction is a well known method for biaryl synthesis, drastic conditions in the range of 150-280 °C are required. Zerovalent nickel complexes such as bis(l,5-cyclooctadiene)nickel or tetrakis(triphenylphosphine)nickel have been shown to be acceptable coupling reagents under mild conditions however, the complexes are unstable and not easy to prepare. The method using activated metallic nickel eliminates most of these problems and provides an attractive alternative for carrying out aryl coupling reactions(36,38). [Pg.231]

The arylation of heteroaromatic compounds is also achieved by aryl-aryl coupling reaction. The arylation of A-methylimidazole with bromobenzene occurs under palladium catalysis (Equation (62)).72 The arylation of thiazole with aryl iodide occurs at the 2-position under PdCl2(PPh3)2/CuI catalysis.73 In this case, tetrabutylammonium fluoride improves the activity of the catalyst. Alternatively, thiazoles and benzothiazole are efficiently arylated... [Pg.227]

A typical aryl-aryl coupling and subsequent cyclodehydrogenation have afforded higher homo-logues of 42, such as the terrylene-47 and quaterry-... [Pg.326]

Scheme 13. Synthetic pathway including aryl-aryl coupling and subsequent dehydrogenation to terry-lene tetracarboxdiimide 47 and quaterrylene tetracarboxdiimide 49. Scheme 13. Synthetic pathway including aryl-aryl coupling and subsequent dehydrogenation to terry-lene tetracarboxdiimide 47 and quaterrylene tetracarboxdiimide 49.
These dyes are invariably monoazo compounds with the reactive system attached to the diazo component, owing to the ready availability of monosulphonated phenylenediamine intermediates. Pyrazolone couplers are most commonly used, as in structure 7.82 (where Z is the reactive grouping), and this is particularly the case for greenish yellow vinylsulphone dyes. Catalytic wet fading by phthalocyanine or triphenodioxazine blues is a characteristic weakness of azopyrazolone yellows (section 3.3.4). Pyridones (7.83), barbituric acid (7.84) and acetoacetarylide (7.85 Ar = aryl) coupling components are also represented in this sector, with the same type of diazo component to carry the reactive function. [Pg.400]

The Pd(0)-catalyzed electroreductive coupling of aryl halides (303) is a currently relevant topic. In the electroreduction of aryl halides (307) the replacement of the halogen atom by hydrogen predominantly takes place giving (306). Difficulties are encountered, however, when aryl-aryl coupling products (305) via (304) are wanted (Scheme 116). An efficient electroreductive coupling of aryl bromides (307) (X = Br) and iodides (307) (X = I) into biaryls (310) has been shown to occur in a DMF/Et4NOTs/(Pb cathode) system in the presence of Pd(0) and/or Pd(II) catalysts (Scheme 117) [440]. [Pg.561]


See other pages where Aryl coupling is mentioned: [Pg.293]    [Pg.213]    [Pg.111]    [Pg.348]    [Pg.960]    [Pg.110]    [Pg.514]    [Pg.167]    [Pg.170]    [Pg.185]    [Pg.76]    [Pg.703]    [Pg.731]    [Pg.736]    [Pg.746]    [Pg.756]    [Pg.186]    [Pg.192]    [Pg.241]    [Pg.314]    [Pg.314]    [Pg.157]    [Pg.41]    [Pg.8]    [Pg.139]    [Pg.66]    [Pg.347]    [Pg.347]   
See also in sourсe #XX -- [ Pg.171 , Pg.172 , Pg.173 , Pg.174 , Pg.187 , Pg.188 , Pg.189 , Pg.190 , Pg.191 , Pg.197 ]

See also in sourсe #XX -- [ Pg.258 ]

See also in sourсe #XX -- [ Pg.78 ]

See also in sourсe #XX -- [ Pg.217 ]

See also in sourсe #XX -- [ Pg.238 , Pg.246 ]




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2-aryl oxazoline catalysed Suzuki coupling

Activated aryl chlorides, Heck coupling, palladium®) chloride

Active Nickel-Mediated Dehalogenative Coupling of Aryl and Benzylic Halides

Alkenes coupling with aryl diazonium salts

Alkenes reductive coupling with aryl halides

Alkenyl-aryl coupling

Alkenyl-aryl coupling natural product synthesis

Alkenyl-aryl coupling reactions

Alkenyl-aryl cross-coupling alkylation

Alkenyl-aryl cross-coupling natural products synthesis

Alkenyl/aryl iodide coupling

Alkenylation and Arylation of Boron-Bound Groups (Suzuki Coupling)

Alkyl-aryl coupling reaction

Alkynylation alkynyl-aryl coupling

Allyl-aryl coupling

Allyl-aryl cross-coupling, allylation reactions

Allylic derivatives allyl-aryl coupling

Amide arylation coupling

Amides copper-catalyzed coupling with aryl

Amines cross-coupling with aryl halides

Arenes cross-coupling with aryl halides

Aryl Borane Coupling Reactions

Aryl Stille coupling

Aryl Suzuki coupling

Aryl Suzuki cross-coupling

Aryl aldehydes, pinacol coupling

Aryl aldehydes, reductive coupling

Aryl aldehydes, reductive coupling addition

Aryl aldehydes, reductive coupling bromides

Aryl aldehydes, reductive coupling reaction

Aryl alkyne coupling

Aryl boronic acids cross coupling

Aryl boronic acids, coupling reactions

Aryl boronic acids, palladium catalyzed coupling

Aryl bromide-alkyne Sonogashira cross-coupling

Aryl bromides coupling

Aryl bromides cross-coupling

Aryl bromides, cross-coupling with

Aryl chloride, Buchwald-Hartwig amination coupling reactions

Aryl chlorides Heck coupling, palladium®) chloride

Aryl chlorides Negishi coupling

Aryl chlorides Sonogashira coupling

Aryl chlorides Stille coupling

Aryl chlorides Suzuki coupling reactions

Aryl chlorides coupling, palladium®) chloride

Aryl chlorides facile coupling

Aryl chlorides, decarboxylative couplings

Aryl compounds Hiyama cross-coupling reaction

Aryl compounds Kumada cross-coupling reactions

Aryl compounds Negishi cross-coupling reactions

Aryl compounds crossed coupling reactions

Aryl compounds intramolecular coupling reactions

Aryl coupling reactions

Aryl coupling with pinacolborane

Aryl cross-coupling

Aryl cross-coupling reactions

Aryl derivatives Sonogashira coupling reactions

Aryl derivatives Stille cross-coupling

Aryl derivatives Suzuki cross-coupling

Aryl diazonium salts coupling reactions

Aryl diazonium salts, Gomberg coupling reaction

Aryl groups, coupling

Aryl hahdes, reductive coupling

Aryl halide-alkyne coupling

Aryl halides Buchwald-Hartwig couplings

Aryl halides Heck couplings

Aryl halides Sonogashira coupling

Aryl halides Suzuki coupling reactions

Aryl halides Suzuki couplings

Aryl halides alkylborane coupling

Aryl halides alkyne cross-coupling

Aryl halides catalysed cross-coupling with

Aryl halides copper-catalyzed coupling

Aryl halides coupling reaction with

Aryl halides coupling reaction with alkenes

Aryl halides coupling reaction with organoboranes

Aryl halides coupling reactions

Aryl halides coupling with cyanides

Aryl halides coupling, asymmetric, with

Aryl halides cross-coupling

Aryl halides cross-coupling reactions

Aryl halides metal-catalyzed cross-coupling, terminal

Aryl halides nucleophilic coupling

Aryl halides organometallic compound cross-coupling

Aryl halides oxidative coupling

Aryl halides, coupling with vinylboronic

Aryl halides, coupling with vinylboronic acids

Aryl halides, cross coupling with

Aryl halides, cross coupling with alkylmetals

Aryl halides, repetitive coupling

Aryl homo-coupling

Aryl homo-coupling reactions

Aryl iodides coupling

Aryl iodides cross-coupling

Aryl ketones, pinacol coupling

Aryl ketones, reductive coupling

Aryl phosphates coupling reactions

Aryl tosylates, Suzuki coupling

Aryl triflates alkynylsilane coupling

Aryl triflates coupling

Aryl triflates coupling reactions

Aryl triflates cross-coupling reactions

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

Aryl-alkyl coupling

Aryl-alkynyl coupling

Aryl-alkynyl coupling reactions

Aryl-allyl cross-coupling, palladium-catalyzed

Aryl-allyl cross-coupling, palladium-catalyzed allylation

Aryl-benzyl cross-coupling, palladium-catalyzed

Aryl-benzyl cross-coupling, palladium-catalyzed benzylation

Aryl-heteroaryl compounds, Suzuki coupling

Aryl-nitrogen couplings

Aryl-phosphorus coupling

Aryl-vinyl coupling

Arylated furans, cross-coupling, furan

Arylation Heck coupling

Arylation cross-dehydrogenative coupling

Base-catalyzed, acylation coupling, aryl halides with

Benzylation reactions aryl-benzyl coupling

Biaryl synthesis aryl halide reductive coupling

Biaryls by Aryl Coupling

Boronic acids aryl halide cross-coupling

Buchwald-Hartwig amination aryl chloride coupling

Catalyzed Coupling of Amides with Aryl Halides

Copper Aryl-amine cross coupling

Copper-Catalyzed Coupling of Aryl Halides with Amines, Alcohols, and Thiols

Copper-catalyzed coupling, aryl ether synthesis

Coupling Reactions of Aryl Fluorides

Coupling Stille: aryl triflate + organostannane

Coupling agents aryl chlorides

Coupling aryl halides with boronic

Coupling aryl halides with boronic acids

Coupling of Substituted Glycals with Aryl Groups

Coupling of aryl diazonium salts

Coupling of aryl halides

Coupling of two aryl residues

Coupling reactions aryl compounds

Coupling reactions of aryl diazonium salts

Coupling reactions with aryl compounds

Coupling with aryl halides

Cross coupling reactions aryl boronic acids with amines

Cross coupling reactions aryl halides with amines

Cross-Coupling of Aryl Halides with Aliphatic Alcohols

Cross-Coupling of Aryl Halides with Anionic C-Nucleophiles

Cross-Coupling of aryl Halides with Amides and Carbamates

Cross-coupling Reactions of Aryl Electrophiles

Cross-coupling alkenyl-aryl

Cross-coupling alkynyl-aryl

Cross-coupling aryl hahdes, palladium-catalyzed

Cross-coupling aryl triflates

Cross-coupling hetero)aryl triflates

Cross-coupling of aryl bromides

Cross-coupling reactions alkenyl-aryl

Cross-coupling reactions aryl chlorides

Cross-coupling reactions aryl halide oxidative addition

Cross-coupling reactions arylzinc-aryl halides

Cross-coupling reactions ketone arylation

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

Cross-dehydrogenative coupling direct arylations

Diazonium salts aryl, coupling

Diboronic cross-coupling with aryl halides (triflates

Direct Coupling of Glycals with Aryl Groups

Direct arylation, phosphonium coupling

Direct arylation, phosphonium coupling heterocycles

Direct coupling, aryl halides with enolates

Ditin/aryl iodide coupling

Glycals substituted, aryl group coupling

Grignard reagents aryl coupling with

Halides aryl, reductive coupling

Halides, aryl coupling

Halides, aryl, also coupling

Halides, aryl, arylation coupling

Halides, aryl, arylation coupling with active

Halides, aryl, arylation coupling with alkenes

Halides, aryl, arylation coupling with enolate anions

Halides, aryl, arylation coupling with heterocycles

Halides, aryl, arylation heteroaryl, coupling with

Halides, aryl, arylation metal catalyzed coupling

Halides, aryl, arylation metal mediated coupling

Halides, aryl, arylation photochemical coupling with

Heck coupling reactions asymmetric arylation

Heck coupling reactions ketone enolate arylation

Heck coupling reactions vinyl ethers with aryl halides

Heck couplings internal arylation

Heteroatomic coupling aryl ethers

Heteroatomic coupling aryl halides, amination reactions

Homo-coupling reactions of aryl halides to biaryls catalysed by nickel complexes

Homoenolate Aryl coupling

Intramolecular aryl-alkene coupling cascade

Metal-Catalyzed Coupling Reactions with Aryl Chlorides, Tosylates and Fluorides

Natural products aryl-alkenyl coupling

Negishi Cross-Coupling of Vinyl and Aryl Organozinc Halides

Nickel aryl coupling scheme

Nickel aryl halide coupling

Nickel catalysis aryl coupling

Nickel-catalyzed alkenyl aryl coupling

Nickel-catalyzed arylation cross-coupling with Grignard reagents

Nucleophilic coupling aryl radicals

Organozinc-aryl iodide coupling

Oxidative aryl-coupling

PALLADIUM-CATALYZED COUPLING OF ARYL HALIDES

Palladium alkynyl-aryl coupling

Palladium catalyzed coupling between aryl

Palladium-Catalyzed Cross-Coupling of Phenyltrimethoxysilane with Aryl Iodides. 4-Acetylbiphenyl

Palladium-catalyzed Coupling Reactions of Aryl Halides

Palladium-catalyzed Suzuki-Miyaura Cross-coupling Reactions of Functionalized Aryl and Heteroaryl Boronic Esters

Palladium-catalyzed alkynyl-aryl coupling

Palladium-catalyzed alkynyl-aryl coupling reactions

Palladium-catalyzed arylation cross-coupling with

Palladium-catalyzed arylation cross-coupling with Grignard reagents

Palladium-catalyzed arylation cross-coupling with organolithium reagents

Palladium-catalyzed arylation cross-coupling with organozinc reagents

Phenols copper-catalyzed coupling with aryl

Phenyl-aryl coupling, palladium-, nickel

Phenylboronic Suzuki coupling with aryl bromides

Phosphines, aryl, coupling constants

Phosphorus coupling products, aryl halide

Pinacolborane coupling with aryl halides

Preparation from Aryl Halides and Sulfonates by Cross-coupling

Preparation of Aryl Ketones via Ni-Catalyzed Negishi Coupling Reactions

Prior C-X Bond-Forming Coupling Chemistry Related to the Amination of Aryl Halides

Reaction mechanism aryl iodide cross-coupling

Reactions of Terminal Alkynes to Form Aryl- and Alkenylalkynes (Sonogashira Coupling)

Reductive Coupling Reactions of Aryl Aldehydes

Rhodium catalysis aryl coupling

Selenides, aryl coupling reactions

Solid support catalysts aryl iodide coupling

Sonogashira coupling aryl-alkynyl

Sonogashira couplings of aryl bromides

Stannanes aryl, palladium-catalyzed coupling

Stille coupling alkenyl-aryl

Stille coupling aryl chloride catalyst development

Sulfides, aryl coupling reactions

Sulfones, aryl coupling reactions

Sulfoxides, aryl coupling reactions

Suzuki coupling reactions aryl chlorides with phenylboronic acid

Suzuki cross-coupling aryl halides

Terminal alkynes coupling with aryl iodides/bromides

Thiols copper-catalyzed coupling with aryl

Thiols, aryl coupling reactions

Three-Component Coupling Reactions via Aryl Carbanion Trapping by an External Electrophile

Transition Metal-Catalyzed Couplings of Nonactivated Aryl Compounds

Trimethylsilylacetylene, aryl coupling

Vinylboronic acids, coupling with aryl

Vinyltin/aryl bromide coupling

Vinyltin/aryl iodide coupling

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