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Stille Pd-catalyzed

The Stille Pd-catalyzed cross coupling has been employed in the synthesis of modified porphyrins [54, 55, 82]. For example, the union of dOialoporphyrins with tri-n-butylvinylstannane affords protoporphyrin IX in excellent yield [82]. [Pg.52]

Example 9.12 CuO-Modified Stille Pd -Catalyzed Reaction of 3-(2(4,4-I>ime-thyloxazolin-2-yl)ethyl)thiophene ... [Pg.215]

Scheme 5.2-19 Pd-catalyzed Stille coupling of a-iodoenones with vinyl and aryl stannanes in... Scheme 5.2-19 Pd-catalyzed Stille coupling of a-iodoenones with vinyl and aryl stannanes in...
The consistent observation of the arylated products with 92% ee confirms that the enantioselectivity of the asymmetric deprotonation was preserved during the transmetalation with ZnCl2 and retained during the Pd-catalyzed coupling. In fact, the Negishi coupling with 3-bromopyridine (entry 16) was performed at 60 °C, and still provided 26m in 92% ee, which constitutes a formal total synthesis of (R)-nicotine [27]. [Pg.234]

Aryl hydrazide-based linker 79 was developed as a traceless handle that released products under mild oxidative conditions (Scheme 42) [91]. Polymeric bound p-iodophenylhydrazide was subjected to a variety of Pd°-catalyzed coupling reactions (Heck, Suzuki, Sonogashira, and Stille). Oxidation with Cu(OAc)2 in MeOH and pyridine released the final products in 50-96% yield. [Pg.210]

Transition metal-catalyzed transformations are of major importance in synthetic organic chemistry [1], This reflects also the increasing number of domino processes starting with such a reaction. In particular, Pd-catalyzed domino transformations have seen an astounding development over the past years with the Heck reaction [2] - the Pd-catalyzed transformation of aryl halides or triflates as well as of alkenyl halides or triflates with alkenes or alkynes - being used most often. This has been combined with another Heck reaction or a cross-coupling reaction [3] such as Suzuki, Stille, and Sonogashira reactions. Moreover, several examples have been published with a Tsuji-Trost reaction [lb, 4], a carbonylation, a pericyclic or an aldol reaction as the second step. [Pg.359]

Domino transition metal-catalyzed processes can also start with a cross-coupling reaction most often, Suzuki, Stille and Sonogashira reactions are used in this context They can be combined with another Pd-catalyzed transformation, and a number of examples have also been reported where a pericydic reaction, usually a Diels-Alder reaction, follows. An interesting combination is also a Pd-catalyzed borina-tion followed by a Suzuki reaction. [Pg.386]

The Pd-catalyzed cross coupling reaction of 3-stannylated pyrroles is also known. Muchowski has thus prepared and utilized 96 to effect Stille couplings leading to 97 [59]. [Pg.50]

Stille has employed the Pd-catalyzed coupling that bears his name in syntheses of anthramycin and analogues [79, 80]. Thus, enol triflate 112 is smoothly coupled with acrylates to provide 113-115. [Pg.52]

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]

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]

Doi and Mori made excellent use of dihydroindole triflate 189 in Pd-catalyzed cross-coupling reactions. This compound was discussed earlier in the Suzuki section, and it also undergoes Stille couplings as illustrated below [140]. A final dehydrogenation completes the sequence to indoles. [Pg.114]

In conclusion, the fantastically diverse chemistry of indole has been significantly enriched by palladium-catalyzed reactions. The accessibility of all of the possible halogenated indoles and several indolyl triflates has resulted in a wealth of synthetic applications as witnessed by the length of this chapter. In addition to the standard Pd-catalyzed reactions such as Negishi, Suzuki, Heck, Stille and Sonogashira, which have had great success in indole chemistry, oxidative coupling and cyclization are powerful routes to a variety of carbazoles, carbolines, indolocarbazoles, and other fused indoles. [Pg.163]

Other tin reagents have found use in Pd-catalyzed cross-couplings with halopyridines as well. The Stille coupling of 3-iodopyridine with ethoxy(tributylstannyl)acetylene gave rise to 3-ethoxyethynylpyridine (100), which was then hydrolyzed to the corresponding ethyl 3-pyridylacetate (101) [88], Carbamoylstannane 102 was prepared by sequential treatment of lithiated piperidine with carbon monoxide and trimethyltin chloride. Stille coupling of carbamoylstannane 102 and 3-bromopyridine provided a unique entry to amide 103 [89],... [Pg.204]

Innumerable aryl- and heteroarylstannanes take part in Stille couplings with halopyridines. In one such example, the union of arylstannane 106 and 4-bromopyridine furnished arylpyridine 107 [90], Arylstannane 106 was prepared from the Pd-catalyzed reaction of hexabutylditin with iodoarene 105, which arose from aminobenzolactam 104 via a Sandmeyer reaction. [Pg.204]

Stille couplings also have been exploited in the synthesis of the aromatic macrocyclic core of diazonamide A (2) [5, 20]. Pattenden s group utilized the Pd-catalyzed coupling between the 3-stannyl substituted indole 23 and the 3-bromooxazole 24 to provide a particularly expeditious route to the ring system 25 [20]. In addition, Harran s group secured the connection between bromooxazole 12 and vinylstannane 26 also using a Stille coupling [5]. [Pg.328]

Pd-catalyzed carbonylation of 2-chloropyrazine 1-oxide failed, whereas that of 3-chloropyrazine 1-oxide (40) proceeded without deoxygenation of the IV-oxide function to give 3-methoxycarbonylpyrazine 1-oxide (73). This observation was in accord with the failure of Stille reactions of 2-chloropyrazine 1-oxide [9,18]. [Pg.366]


See other pages where Stille Pd-catalyzed is mentioned: [Pg.109]    [Pg.282]    [Pg.115]    [Pg.208]    [Pg.132]    [Pg.109]    [Pg.282]    [Pg.115]    [Pg.208]    [Pg.132]    [Pg.228]    [Pg.217]    [Pg.276]    [Pg.732]    [Pg.372]    [Pg.189]    [Pg.305]    [Pg.6]    [Pg.8]    [Pg.10]    [Pg.13]    [Pg.90]    [Pg.91]    [Pg.106]    [Pg.111]    [Pg.111]    [Pg.116]    [Pg.141]    [Pg.153]    [Pg.197]    [Pg.226]    [Pg.252]    [Pg.260]    [Pg.317]    [Pg.329]    [Pg.351]    [Pg.366]   


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