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Diene syntheses allenes

Interestingly, significant progress has been made for the hydroamination of more reactive substrates such as styrenes, alkynes, dienes, and allenes. Specifically, highly selective catalysts have been discovered for the synthesis of fine chemicals (pharmaceuticals, natural products, chemical intermediates). In this area however, the problem of catalyst stabiUty can also be questioned in several cases. [Pg.132]

Rozhkov IN, Stepanoff AA (1981) The second regular meeting of soviet-japanese fluorine chemists. Reductive coupling of fluoroolefins Synthesis of higher perfluorinated 1,3-dienes and allenes, Moscow, p 133... [Pg.36]

A number of cycloaddition reactions involving allene derivatives as dienophiles have been recorded. Allene itself reacts only with electron-deficient dienes but allene carboxylic acid or esters, in which a double bond is activated by conjugation with the carboxylic group, react readily with cyclopentadiene to give 1 1 adducts in excellent yield. For example, the allene 12 gave, with very high yield and selectivity, the cycloadduct 13, used in a synthesis of (-)-P-santalene (3.19). An allene equivalent is vinyl triphenylphosphonium bromide, which is reported to react with a number of dienes to form cyclic phosphonium salts. These can be converted into methylene compounds by the usual Wittig reaction procedure (3.20). [Pg.168]

Cycloaddition reactions of dienes with allenes are used in the synthesis of natural products. For example, the [4+2] cycloaddition reaction of the furan-tethered diene 443 with the allene 444 affords the carbon framework of the eleutherobin aglycone 445 . [Pg.456]

ArisawaM, Suwa A, Fujimoto K, Yamaguchi M. Transition metal-catalyzed synthesis of ( )-2-(alkylthio)alka-l, 3-dienes from allenes and dialkyl disulfides with concomitant hydride transfer. Synth. Catal. 2003 345 560-563. [Pg.1439]

S The polymerization of certain butadienes is also a diene synthesis. Isoprene dimerizes to dipentene and diprene... Diene additions make possible the synthesis of many otherwise inaccessible or difficulty accessible products, and they have been much used for proving structures and establishing the presence of conjugated systems." Allen and Blatt, 1938) [6] S... [Pg.580]

S-Alkylthiosulfates s. S-Carb-amylmethylthiosulfates Allenes, diene synthesis with — 16, 733 Alloxan 5-hydrazones 16, 460... [Pg.236]

Enyne metathesis starting either from acetylenic boronates and homoallylic alcohols [104a,c] or from propargyl alcohols and allylboronates [104b] has recently been described. The resulting boronated dienes can be converted to allenes or cycloaddition products. The cross metathesis of vinylcyclopropyl-boronates directed toward the total synthesis of natural products has very recently been investigated by Pietruszka et al. [104d]. [Pg.256]

In 2009, Ritter and coworkers reported a selective Fe-catalyzed hydroboration of 1,3-dienes to produce linear ( )-y-disubstituted allylboranes under mild conditions when a combination of Ll-FeCl2 and magnesium metal as a catalyst was used. Tbe branched ( )-allylboranes were obtained by using L2-FeCl2 instead of Ll-FeCl2 (Scheme 26) [88]. For the synthesis of 2-borylallylsilanes, this method was superior to the previously reported silaboration of allenes [89]. [Pg.51]

If the alkenes and acetylenes that are subjected to the reaction mediated by 1 have a leaving group at an appropriate position, as already described in Eq. 9.16, the resulting titanacycles undergo an elimination (path A) as shown in Eq. 9.58 [36], As the resulting vinyltitaniums can be trapped by electrophiles such as aldehydes, this reaction can be viewed as an alternative to stoichiometric metallo-ene reactions via allylic lithium, magnesium, or zinc complexes (path B). Preparations of optically active N-heterocycles [103], which enabled the synthesis of (—)-a-kainic acid (Eq. 9.59) [104,105], of cross-conjugated trienes useful for the diene-transmissive Diels—Alder reaction [106], and of exocyclic bis(allene)s and cyclobutene derivatives [107] have all been reported based on this method. [Pg.346]

Terminal allenes.1 A synthesis of 1,2-dienes (3) from an aldehyde or a ketone involves addition of ethynylmagnesium bromide followed by reaction of the adduct with methyl chloroformate. The product, a 3-methoxycarbonyloxy-l-alkyne (2), can be reduced to an allene by transfer hydrogenolysis with ammonium formate catalyzed by a zero-valent palladium complex of 1 and a trialkylphosphine. The choice of solvent is also important. Best results are obtained with THF at 20-30° or with DMF at 70°. [Pg.339]

The axially chiral (allenylmethyl) silanes 110 were also prepared in optically active form using chiral Pd catalysts [98]. For the asymmetric synthesis of 110, a Pd/(R)-segphos system was much better in terms of enantioselectivity than the Pd/(R)-binap catalyst. Under the optimized conditions, 110m and llOt were obtained in 79% ee (57% yield) and 87% ee (63% yield), respectively (Scheme 3.56). The enantio-merically enriched (allenylmethyl) silanes 110 served for Lewis acid-promoted SE reaction with tBuCH(OMe)2 to give conjugated dienes 111 with a newly formed chiral carbon center (Scheme 3.56). During the SE reaction, the allenic axial chirality was transferred to the carbon central chirality with up to 88% transfer efficiency. [Pg.116]

Alkoxyallenes turned out to be excellent starting materials also for the synthesis of highly functionalized 1,3-dienes, two examples being depicted in Schemes 8.61 and 8.62. As described by Kantlehner et al., 1,3-dienes such as 238 were obtained from methoxyallene derivative 50 by condensation with CH-acidic compounds 237 [135]. Hoppe and co-workers explored the stereochemical course of the allene Claisen rearrangement under Johnson s conditions, e.g. the reaction of 239 with trimethyl orthoacetate, which furnished intermediate 240 followed by rearrangement to the isomeric dienes 241a,b [136],... [Pg.466]

In general, sulfur-substituted allenes are accessible starting from alkyne precursors by a variety of transformations such as isomerization, rearrangement or addition reactions. The standard method for the synthesis of donor-substituted allenes is again the base-induced isomerization of alkynes. This very first method was applied for the preparation of achiral [11, 162, 163] and chiral [164] S-functionalized 1,2-dienes (Scheme 8.78). [Pg.475]

In view of this background, it is the aim of this chapter to organize the fundamentals of radical additions to 1,2-dienes and to present its state of the art in organic synthesis. All aspects of enyne allene cyclizations [19, 20] have been omitted since this topic is addressed in Chapter 20. In order to simplify the mechanistic discussion, the positions and Jt-bonds of allenes have been consistently numbered using the nomenclature outlined in Figure 11.1. [Pg.702]

Furthermore, the first catalytic synthesis of allenes with high enantiomeric purity [15c, 25] was applied recently to the pheromone 12 by Ogasawara and Hayashi [26] (Scheme 18.7). Their palladium-catalyzed SN2 -substitution process of the bromo-diene 16 with dimethyl malonate in the presence of cesium tert-butanolate and catalytic amounts of the chiral ligand (R)-Segphos furnished allene 17 with 77% ee. Subsequent transformation into the desired target molecule 12 via decarboxylation and selenoxide elimination proceeded without appreciable loss of stereochemical purity and again (cf. Scheme 18.5) led to the formation of the allenic pheromone in practically the same enantiomeric ratio as in the natural sample. [Pg.1001]

Cross-Coupling Reactions of Allenes Producing Compounds with an Intact 1,2-Diene Moiety 849 Cross-Coupling Reactions of Allenyl Halides 849 Cross-Coupling Reactions of Allenylmetal Compounds 856 Cross-Coupling Reactions of a-Substituted Allenes 860 Cross-Coupling Reactions of Allenes at the Central Position 862 Synthesis of Alkynes 870 Miscellaneous Reactions 872 Conclusion 873... [Pg.1146]

Abstract The basic principles of the oxidative carbonylation reaction together with its synthetic applications are reviewed. In the first section, an overview of oxidative carbonylation is presented, and the general mechanisms followed by different substrates (alkenes, dienes, allenes, alkynes, ketones, ketenes, aromatic hydrocarbons, aliphatic hydrocarbons, alcohols, phenols, amines) leading to a variety of carbonyl compounds are discussed. The second section is focused on processes catalyzed by Pdl2-based systems, and on their ability to promote different kind of oxidative carbonylations under mild conditions to afford important carbonyl derivatives with high selectivity and efficiency. In particular, the recent developments towards the one-step synthesis of new heterocyclic derivatives are described. [Pg.244]

Cyclic allenes have previously been obtained only admixed with the isomeric acetylenes. The present two-step synthesis is a practical method for the preparation of cyclic allenes, and at the same time it describes a general method for the preparation of allenes. It is based on the original work of Doering and co-workers. Examples of the reaction sequence above are known in which allenes are not produced, or they represent only a part of the reaction products. A one-step synthesis of 1,2-cyclonona-diene has been reported. ... [Pg.20]


See other pages where Diene syntheses allenes is mentioned: [Pg.412]    [Pg.235]    [Pg.434]    [Pg.418]    [Pg.156]    [Pg.361]    [Pg.260]    [Pg.361]    [Pg.516]    [Pg.145]    [Pg.10]    [Pg.61]    [Pg.68]    [Pg.185]    [Pg.269]    [Pg.402]    [Pg.467]    [Pg.724]    [Pg.862]    [Pg.1013]    [Pg.1042]    [Pg.1048]    [Pg.1050]    [Pg.638]    [Pg.675]    [Pg.102]    [Pg.156]    [Pg.102]   
See also in sourсe #XX -- [ Pg.16 ]




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