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Sonogashira-Heck reaction

Scheme 6.44 Tandem Sonogashira-hydroaUcoxylation and Sonogashira-Heck reactions... Scheme 6.44 Tandem Sonogashira-hydroaUcoxylation and Sonogashira-Heck reactions...
Closely related to the Heck reaction is the Sonogashira reaction i.e. the palladium-catalyzed cross-coupling of a vinyl or aryl halide 20 and a terminal alkyne 21 ... [Pg.158]

The original Sonogashira reaction uses copper(l) iodide as a co-catalyst, which converts the alkyne in situ into a copper acetylide. In a subsequent transmeta-lation reaction, the copper is replaced by the palladium complex. The reaction mechanism, with respect to the catalytic cycle, largely corresponds to the Heck reaction.Besides the usual aryl and vinyl halides, i.e. bromides and iodides, trifluoromethanesulfonates (triflates) may be employed. The Sonogashira reaction is well-suited for the synthesis of unsymmetrical bis-2xy ethynes, e.g. 23, which can be prepared as outlined in the following scheme, in a one-pot reaction by applying the so-called sila-Sonogashira reaction ... [Pg.158]

Carbon-carbon bond formation reactions and the CH activation of methane are another example where NHC complexes have been used successfully in catalytic applications. Palladium-catalysed reactions include Heck-type reactions, especially the Mizoroki-Heck reaction itself [171-175], and various cross-coupling reactions [176-182]. They have also been found useful for related reactions like the Sonogashira coupling [183-185] or the Buchwald-Hartwig amination [186-189]. The reactions are similar concerning the first step of the catalytic cycle, the oxidative addition of aryl halides to palladium(O) species. This is facilitated by electron-donating substituents and therefore the development of highly active catalysts has focussed on NHC complexes. [Pg.14]

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]

In domino Sonogashira processes, the second step is usually an amination or a hy-droxylation to give y-lactones, furans, or indoles however, there is also the possibility of performing a Heck reaction as a second step. [Pg.393]

A silver(i) complex having the heterosubstituted 3-methyl-l-(2-pyridylmethyl)imidazol-2-ylidene ligand, [Ag(carbene)2] [I/Agl2] 37, was reported, which was further reacted to give a series of palladium(n) carbene complexes that were demonstrated to be active catalysts toward Heck, Suzuki, and Sonogashira coupling reactions.87... [Pg.212]

In conclusion, the already rich chemistry of pyrroles is greatly expanded by the palladium reactions presented in this chapter. The abundance of both 2- and 3-pyrrolyl halides and triflates has led to many examples of high-yielding Negishi, Suzuki, Stille, Sonogashira, and Heck reactions. Noteworthy are the excellent approaches to alkynyl pyrroles and porphyrins using Sonogashira, Stille, and Suzuki reactions. [Pg.66]

In the presence of tetramethyltin, 1-bromonauclefine reacts with CO in a Pd-catalyzed carbonylation to give the alkaloid naucletine [202], Dong and Busacca effected a new synthesis of tryptamines and tryptophols via a Rh-catalyzed hydroformylation of functionalized anilines that are prepared by a standard Heck reaction, as shown for the preparation of tryptamine sulfonamide 325 [423]. This reaction is applicable to ring-substituted tryptamines (Cl, Br, F. OMe, CF3). Likewise, the Rh-catalyzed carbonylation of o-alkynylanilines, which were prepared by a Pd-catalyzed Sonogashira coupling, leads to oxindoles (60-86% yields) [424],... [Pg.148]

The suitability of the polymer-Hnker conjugate was examined for a variety of transformations, in particular Pd°-catalyzed reactions. For instance, the polymer-bound aryl iodide (63) was transformed quantitatively in a Heck reaction to a cinnamic acid ester (64) and to biphenyl (66) in a Suzuki reaction. It gave an alkyne (65) in a Sonogashira reaction (Scheme 10.12). [Pg.464]

Other successful examples of catalysts containing NHC ligands are found in palladium- and nickel-catalyzed carbon-carbon bond formations. The catalyst development with these metals has focused in particular on Heck-type reactions, especially the Mizoroki-Heck reaction itself [Eq. (42)] and various cross coupling reactions [Eq. (43)], e.g., the Suzuki-Miyaura reaction ([M] = and the Kumada-Corriu reaction ([M] = MgBr). " Related reactions like the Sonogashira coupling [Eq. (44)]326-329 Buchwald-... [Pg.42]

Rahman et al used a novel high throughput reactor to produce substituted acetylene by the Sonogashira reaction and the Mizoroki-Heck reaction in series using the same IL in a one-pot operation. The products were obtained in good yields and the contamination from the previous reaction was not carried forward to the next. [Pg.179]

Cross-coupling reactions (Sonogashira or Heck reactions) of 1-bromo-l-fluor-oalkenes, which are generally prepared through the reaction of an aldehyde with CFBra and PPha. ... [Pg.31]

Like halopyridines, diazines participate in Sonogashira coupling too. 3,6-dimethyl-2-chloropyrazin, for example on coupling with phenylacetylene under standard conditions, gave the desired compound in good yield, which was further reduced to give a natural product (7.36.)51 (NB. the Heck reaction, which could be considered as an alternate approach would be expected to furnish predominantly the c/.v-olcfin as product). [Pg.152]


See other pages where Sonogashira-Heck reaction is mentioned: [Pg.23]    [Pg.154]    [Pg.322]    [Pg.19]    [Pg.562]    [Pg.152]    [Pg.318]    [Pg.372]    [Pg.167]    [Pg.195]    [Pg.123]    [Pg.42]    [Pg.315]    [Pg.332]    [Pg.371]    [Pg.31]    [Pg.154]    [Pg.158]    [Pg.30]    [Pg.286]    [Pg.288]    [Pg.771]    [Pg.500]    [Pg.26]    [Pg.177]    [Pg.365]    [Pg.393]    [Pg.119]    [Pg.271]   
See also in sourсe #XX -- [ Pg.23 , Pg.82 ]

See also in sourсe #XX -- [ Pg.23 , Pg.82 ]

See also in sourсe #XX -- [ Pg.23 , Pg.82 ]

See also in sourсe #XX -- [ Pg.23 , Pg.82 ]




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Sonogashira reaction

Suzuki-Miyaura, Ullmann, Sonogashira, and Heck Coupling Reactions

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