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Suzuki arylboronic acids

The Suzuki coupling of arylboronic acids and aryl halides has proven to be a useful method for preparing C-aryl indoles. The indole can be used either as the halide component or as the boronic acid. 6-Bromo and 7-bromoindolc were coupled with arylboronic acids using Pd(PPh3)4[5]. No protection of the indole NH was necessary. 4-Thallated indoles couple with aryl and vinyl boronic acides in the presence of Pd(OAc)j[6]. Stille coupling between an aryl stannane and a haloindole is another option (Entry 5, Table 14.3). [Pg.143]

The more utilitarian means for installing an aryl substituent in position 4 onto the 2(5//)-furanone ring, the Suzuki-type cross-coupling of arylboronic acid with... [Pg.120]

This method has been applied to a large-scale preparation of 6-bromoindole, which reacts with various arylboronic acids via the Suzuki reaction to afford 6-aryhndoles fEq. 10.50. 6-Bromo-5-methoxyindole for use in the synthesis of marine bromoindole " and 5-amino-7-ethoxycarbonyhndole for use in synthesis of l//-pyrrolo[3,2-g quina2ohne ring system fEq. 10.51 " have been prepared from the appropriate o-nitrotoluene. [Pg.339]

Remarkably, one year later Leadbeater described that biaryls can be synthesized via a Suzuki-type coupling under transition-metal free conditions [51, 52]. The reaction conditions were almost identical to those reported for the ligand-free process, with the difference being that a larger amoimt of Na2C03 and arylboronic acid were used. Only one successful example of a heteroaryl haUde substrate is shown namely, the coupling of 2-bromopyridine with phenylboronic acid (Scheme 32). 3-Bromothiophene did not couple under the same reaction conditions. Unfortimately, attempts to use heteroarylboronic acids such as 3-pyridinylboronic acid, 3-thienylboronic acid, and lH-indol-5-ylboronic acid on 4-bromoacetophenone completely failed. [Pg.171]

SUZUKI CROSS-COUPLING OF ARYLCHLORIDES WITH ARYLBORONIC ACIDS... [Pg.208]

The Suzuki reaction has proved extremely versatile and has found extensive use in natural product. synthesis. " Arylboronic acids [ArB(OH)2 are the usual substrates in this reaction together with arylhalides or triflates (Ar X, X = halogen... [Pg.208]

A closely related reaction that is currently receiving much attention is the palladium-catalysed Suzuki coupling of arylboronic acids with aryl halides (Fu and Littke, 1998). For example, this technology has recently been applied by Clariant workers for the production of o-tolyl-benzonitrile (Eqn. (13)), an intermediate to a series of so-called angiotensin-II antagonists, a new class of antihypertensive drugs (Bernhagen, 1998). [Pg.42]

The scope of Suzuki-Miyaura reactions is extremely broad, covering practically all types of organic residues. The cross-coupling of arylboronic acids with aryl halides or triflates is the most... [Pg.308]

A similarly high performance has been reported for oxime-derived (125) and benzylsulfide-derived (126) palladacycles.438 These precatalysts are effective in the cross-coupling of arylboronic acids,438,439 organotin compounds,440 and terminal acetylenes441 with aryl iodides and bromides, and of activated aryl chlorides. SC-palladacycles can effect the Suzuki-Miyaura reaction even at room temperature. [Pg.352]

A one-pot process to form 1,3,4-substituted pyrazoles 25 by Suzuki coupling of arylboronic acids to chromone 24, followed by condensation with hydrazine has been reported <06JCO286>. The synthesis of 3 or 5-o-hydroxyphenol-4-benzylpyrazoles has been accomplished by treatment of 3-benzylchromones, 3-benzylflavones and their 4-thiochromone analogs with hydrazine hydrate in hot pyridine <06EJO2825>. [Pg.211]

A parallel synthesis of a library of 2-aryl-6-chlorobenzothiazoles 112 involves a regioselective palladium-catalyzed Suzuki coupling reaction of 2,6-dichlorobenzothiazole 111 with arylboronic acids (1.1 equiv) under microwave irradiation <06TL3091>. When excess phenylboronic acid is used, Pd(PPh3)4 still provides 2-phenyl-6-chlorobenzothiazole exclusively, while 2-dicyclohexylphosphinobiphenyl 113 generates 2,6-diphenylbenzothiazole as the major product. [Pg.252]

Today, the Suzuki cross coupling of aryl halides and arylboronic acids is also carried out in aqueous-biphasic operation starting from chlorinated derivatives instead of their more costly bromo or iodo equivalents (Equation 5.6, [39]). [Pg.117]

Table 9 Reaction of arylboronic acids with 3,5-dihalo-1,2,4-triazole derivatives under Suzuki coupling conditions (Equation 25)... Table 9 Reaction of arylboronic acids with 3,5-dihalo-1,2,4-triazole derivatives under Suzuki coupling conditions (Equation 25)...
Recently, the groups of Fu and Buchwald have coupled aryl chlorides with arylboronic acids [34, 35]. The methodology may be amenable to large-scale synthesis because organic chlorides are less expensive and more readily available than other organic halides. Under conventional Suzuki conditions, chlorobenzene is virtually inert because of its reluctance to oxidatively add to Pd(0). However, in the presence of sterically hindered, electron-rich phosphine ligands [e.g., P(f-Bu)3 or tricyclohexylphosphine], enhanced reactivity is acquired presumably because the oxidative addition of an aryl chloride is more facile with a more electron-rich palladium complex. For... [Pg.7]

The Suzuki coupling has been utilized to craft (Toctasubstituted tetramesitylporphyrins using various arylboronic acids [62], and Schluter has adopted this reaction to prepare phenyl-pyrrole mixed polymers 75 [63]. The BOC group is easily removed by heating [64] and polymers with molecular weights of up to 23,000 were synthesized. These polymers are potentiaEy interesting for their electrical and nonlinear optical properties [65]. [Pg.47]

In the course of their successful syntheses of the marine alkaloids nortopsentins A-D, Kawasaki and co-workers were able to prepare selectively boronic acid 103 from 1 -(tert-butyldimethylsilyl)-3,6-dibromoindole (102) and effect Suzuki couplings to give 3-arylindoles 104 in good yields [117]. Complementary to this chemistry is the direct Pd-catalyzed reaction of 102 with arylboronic acids to give 6-aryl-3-bromoindoles 105 [117]. [Pg.97]

Martin effected the synthesis of several 3,5-diarylated indoles by a tandem Stille-Suzuki sequence [131]. The latter reaction involves exposure of 3-(3-pyridyl)-5-bromo-l-(4-toluenesulfonyl)indole with arylboronic acids (aryl = 3-thienyl, 2-furyl, phenyl) under typical conditions to give the expected products in 86-98% yield [131], Carrera engaged 6- and 7-bromoindole in Pd-catalyzed couplings with 4-fluoro- and 4-methoxyphenylboronic acids to prepare 6- and 7-(4-fluorophenyl)indole (90% and 74% yield) and 6-(4-methoxyphenyl)indole (73% yield) [29]. Banwell and co-workers employed 7-bromoindole in a Suzuki coupling with 3,4-dioxygenated phenylboronic acids en route to the synthesis of Amaryllidaceae alkaloids [132], Yields of 7-arylated indoles are 93-99%. Moody successfully coupled 4-bromoindole... [Pg.100]


See other pages where Suzuki arylboronic acids is mentioned: [Pg.40]    [Pg.348]    [Pg.170]    [Pg.177]    [Pg.938]    [Pg.209]    [Pg.209]    [Pg.210]    [Pg.211]    [Pg.211]    [Pg.167]    [Pg.177]    [Pg.198]    [Pg.740]    [Pg.187]    [Pg.188]    [Pg.266]    [Pg.569]    [Pg.308]    [Pg.335]    [Pg.356]    [Pg.358]    [Pg.389]    [Pg.318]    [Pg.367]    [Pg.115]    [Pg.119]    [Pg.171]    [Pg.123]    [Pg.174]    [Pg.175]    [Pg.280]    [Pg.99]   
See also in sourсe #XX -- [ Pg.123 ]




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Arylboronates

Suzuki electron-poor arylboronic acids

Suzuki hindered arylboronic acids

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