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Arylation heteroarylation

Aryl, heteroaryl, and alkenyl cyanides are prepared by the reaction of halides[656-658] or triflates[659,660] with KCN or LiCN in DMF, HMPA, and THF. Addition of crown ethers[661] and alumina[662] promotes efficient aryl and alkenyl cyanation. lodobenzene is converted into benzonitrile (794) by the reaction of trimethylsiiyl cyanide in EtiN as a solvent. No reaction takes place with aryl bromides and chlorides[663]. The reaction was employed in an estradiol synthesis. The 3-hydroxy group in 796 was derived from the iodide 795 by converting it into a cyano group[664]. [Pg.246]

In 1959 Carboni and Lindsay first reported the cycloaddition reaction between 1,2,4,5-tetrazines and alkynes or alkenes (59JA4342) and this reaction type has become a useful synthetic approach to pyridazines. In general, the reaction proceeds between 1,2,4,5-tetrazines with strongly electrophilic substituents at positions 3 and 6 (alkoxycarbonyl, carboxamido, trifluoromethyl, aryl, heteroaryl, etc.) and a variety of alkenes and alkynes, enol ethers, ketene acetals, enol esters, enamines (78HC(33)1073) or even with aldehydes and ketones (79JOC629). With alkenes 1,4-dihydropyridazines (172) are first formed, which in most cases are not isolated but are oxidized further to pyridazines (173). These are obtained directly from alkynes which are, however, less reactive in these cycloaddition reactions. In general, the overall reaction which is presented in Scheme 96 is strongly... [Pg.50]

The Robinson-Gabriel cyclodehydration of 2-acylamidoketones 1 is one of the oldest yet most versatile synthesis of 2,5-di- and 2,4,5-trialkyl, aryl, heteroaryl-, and aralkyloxazoles 2. ... [Pg.249]

The Aggarwal group has used chiral sulfide 7, derived from camphorsulfonyl chloride, in asymmetric epoxidation [4]. Firstly, they prefonned the salt 8 from either the bromide or the alcohol, and then formed the ylide in the presence of a range of carbonyl compounds. This process proved effective for the synthesis of aryl-aryl, aryl-heteroaryl, aryl-alkyl, and aryl-vinyl epoxides (Table 1.2, Entries 1-5). [Pg.4]

Our group has recently developed an alternative method for alkyl-(hetero)aryl- as well as aryl-heteroaryl cross coupling reactions catalyzed by iron salts.3 4 This methodology was inspired by early reports of Kochi et al.5>6 on iron-catalyzed cross coupling of vinyl halides and is distinguished by several notable advantages. [Pg.18]

R = aryl, heteroaryl, alkyl R, R = aryl, alkyl, heterocyclic... [Pg.60]

Using Pd-mediated cross-coupling reactions, such as Suzuki, Heck, and Sonoga-shira- Hagihara reaction, researchers efficiently constructed a library of 151 coumarin derivatives from eight 3-bromocoumarins cross-coupled with ten aryl/heteroaryl boronic acids, ten alkenes, and ten alkynes (Fig. 4). [Pg.154]

Pyrimidine- and pyridazine-based analogs have recently emerged as PHD inhibitors and IC50 values in the range of 2-175 nM have been reported in a FRET-based PHD2 assay [52], A number of different substitutions ranging from alkyl, aryl, heteroaryl, and amino groups are accommodated in this series of compounds. While 1-pyrrolidinyl-, 23 and 1-piperidinyl-, 24,... [Pg.132]

Aryl-aryl or Aryl-heteroaryl cross-coupling reactions can be performed with either Ni- or Pd-based catalysis. Due to the low reaction temperatures, substrates containing some additional functional groups are tolerated (26).138... [Pg.316]

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]

Fused pyrazole compounds have been prepared from A-alkyl substituted pyrazoles. For example, a palladium-catalyzed/norbornene-mediated sequential coupling reaction involving an aromatic sp2 C-H functionalization as the key step has been described, in which an alkyl-aryl bond and an aryl-heteroaryl bond were formed in one pot <060L2043>. A variety of highly substituted six-membered annulated pyrazoles 59 were synthesized in a one-step process in moderate yields from IV-bromoalkyl pyrazoles 57 and aryl iodides 58. [Pg.216]

Chang et al. reported a mild tandem intramolecular hydroamination of yne amines to form an endo-adduct intermediate, which reacts with electron-deficient azides to produce cyclic amidines <06JA12366>. Selected examples of an interesting synthetic route to tropene derivatives 165 via a dual hydroamination strategy is shown below. This one-step reaction makes use of a palladium catalyst and takes place by sequential intermolecular hydroamination of cycloheptatriene with aryl, heteroaryl, and primary alkyl amines to generate intermediate 166, followed by transannular intramolecular hydroamination <06JA8134>. [Pg.336]

Here, R = H, alkyl, alkenyl, alkynyl, aryl, heteroaryl, other substituents L = R3P, RNC, R2C, R3PCH2, halide, etc. [Pg.256]

The most convenient pathway to this important class of compounds is the reaction of alkynes RG=GH with salts of the bis(acetylacetonato)gold anion.71 This reaction leads to almost any type of target compounds, including those with R = H, alkyl, alkenyl, alkynyl, aryl, heteroaryl, etc. (Q = metal or quaternary or PPN cation Equation (22)). [Pg.258]

A general method for the Pd-catalyzed cross-couplings of alkyl- and arylzinc chlorides with aryl, heteroaryl, and vinyl chlorides was reported by Dai and Fu.420 They determined that the commercially available and air stable complex Pd(PBut3)2 catalyzed these reactions leading to the formation of an sp2)C - sp2)C bond (Scheme 164). Remarkably, bulky biaryls with two, three, or even four 0/7/fo-substituents (e.g., 323) were obtained in very high yields (76-96%). [Pg.410]

A different approach to quinoxalines and heterocycle-fused pyrazines has been described by the Lindsley group, based on the cyclocondensation of 1,2-diketones and aryl/heteroaryl 1,2-diamines (Scheme 6.260) [450]. Optimized reaction conditions involved heating an equimolar mixture of the diketone and diamine components for 5 min at 160 °C in a 9 1 methanol/acetic acid solvent mixture, which furnished the substituted quinoxalines in excellent yields. This approach could also be applied equally successfully to the synthesis of heteroaryl pyrazines, such as pyr-ido[2,3-b]pyrazines and thieno[3,4-b]pyrazines. The same group has employed 1,2-diketone building blocks for the preparation of other heterocyclic structures (see Schemes 6.198, 6.268, and 6.269). [Pg.270]

Equation 11.44 Solid support aryl/heteroaryl C-N coupling reactions. [Pg.400]

An application of Stille couplings to the solid phase using a traceless A-glycerol linker with 2-stannylindoles has been developed [177]. Only a few examples of the use of 3-stannylindoles in Stille reactions have been described. Ortar and co-workers prepared 169 and 170 and effected Pd-catalyzed cross coupling reactions with several aryl, heteroaryl, and vinyl substrates (bromides, iodides, triflates) to give the expected products 171 in high yields [178]. Enol triflates behave exceptionally well under the Ortar conditions, e.g., 172 to 173. [Pg.110]


See other pages where Arylation heteroarylation is mentioned: [Pg.2]    [Pg.145]    [Pg.38]    [Pg.965]    [Pg.292]    [Pg.78]    [Pg.266]    [Pg.291]    [Pg.30]    [Pg.479]    [Pg.483]    [Pg.24]    [Pg.25]    [Pg.285]    [Pg.59]    [Pg.265]    [Pg.198]    [Pg.77]    [Pg.152]    [Pg.79]    [Pg.225]    [Pg.269]    [Pg.298]    [Pg.183]    [Pg.400]    [Pg.287]    [Pg.401]    [Pg.447]    [Pg.456]    [Pg.724]    [Pg.729]    [Pg.814]    [Pg.121]   
See also in sourсe #XX -- [ Pg.167 ]




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Alkenyl, Alkynyl, Aryl, Heteroaryl and Related Acids

Alkyl/aryl/heteroaryl aldehydes

Aryl heteroaryl ketones

Aryl(heteroaryl)- and 2,3-Diaryl(diheteroaryl)quinoxalines

Aryl- and Heteroaryl-stannanes

Aryl-heteroaryl compounds, Suzuki

Aryl-heteroaryl compounds, Suzuki coupling

Aryl/heteroaryl aldehydes

Aryl/heteroaryl boronic acids

Aryl/heteroaryl, diaryl ketones

Halides, aryl, arylation heteroaryl, coupling with

Heteroaryl

Heteroarylation

Heteroarylation aryl Grignard reagents

Heteroarylations

Organocatalyzed Asymmetric Arylation and Heteroarylation Reactions

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

Preparation of Aryl and Heteroaryl Halides

Substituted aryl/heteroaryl amines

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