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Tetrahydrothiophenes, synthesis

Tetrahydroisoquinolines, synthesis of, 6, 3 Tetrahydrothiophenes, synthesis of, 6, 9 Thia-Payne rearrangement, 60, 1... [Pg.594]

The chemistry behind the synthesis of parent PPV is relatively straightforward and is outlined in Scheme 1-2. A sulfide such as tetrahydrothiophene is reacted... [Pg.14]

Several approaches have been tried in order to facilitate the conversion process and lower the conversion temperatures, e. g. by using appropriate sulfonium groups (tetrahydrothiophene derivatives) and/or different counter ions. With chloride as a counter ion [80], the synthesis of 2,5-dimethoxy-PPV can be performed at room temperature starting from the corresponding dimethylsulfon-ium polyelectrolyte precursor. [Pg.195]

In contrast, synthesis of 3,4-diphosphorylthiophenes requires more elaboration because of low reactivity of 3,4-positions of thiophene and unavailability of 3,4-dihalo or dimetallated thiophenes. Minami et al. synthesized 3,4-diphosphoryl thiophenes 16 as shown in Scheme 24 [46], Bis(phosphoryl)butadiene 17 was synthesized from 2-butyne-l,4-diol. Double addition of sodium sulfide to 17 gave tetrahydrothiophene 18. Oxidation of 18 to the corresponding sulfoxide 19 followed by dehydration gave dihydrothiophene 20. Final oxidation of 20 afforded 3,4-diphosphorylthiophene 16. 3,4-Diphosphorylthiophene derivative 21 was also synthesized by Pd catalyzed phosphorylation of 2,5-disubstituted-3,4-dihalothiophene and converted to diphosphine ligand for Rh catalysts for asymmetric hydrogenation (Scheme 25) [47],... [Pg.26]

The synthesis of pure metalacycle la from [Ir(COD)Cl]2 and LI requires only amine base and heat, followed by precipitation and removal of amine hydrochloride. However, this complex was typically generated in situ during early studies by the treatment of a combination of [lr(COD)Cl]2 and LI with an amine base, such as uPrNH2, l,5,7-triazabicyclo[4.4.0]dec-5-ene (TBD), or l,8-diazabicyclo[5.4.0] undec-7-ene (DBU). If a 1 1 ratio of iridium to ligand is used, a mixture of la and [Ir(COD)Cl]2 is produced. Helmchen et al. have reported that catalyst activation in the presence of tetrahydrothiophene (THT) prevents coordination of the k -phosphoramidite [71]. [Pg.185]

The basic poly(phenylene vinylene) (PPV) polymer is commonly prepared by the sufonium prepolymer route developed by WessUng and Zimmerman in 1968 but much modified by subsequent workers. The synthesis starts from 1,4-bis(chloromethyl)benzene, via the bis-sulfonium salt formed by reaction with tetrahydrothiophene, and then polymerisation is effected to give the prepolymer by reaction with lithium hydroxide (Figure 3.39). Because of the inherent insolubility of PPV it is this prepolymer that is used to form the film coating on the substrate, for example by using a doctor blade technique. The prepolymer is converted into PPV on the substrate by heating in an oven under vacuum at 200 °C for 8-10 h. [Pg.233]

An attempted synthesis of biotin using thiocarbonyl ylide cycloaddition was carried out (131,133,134). The crucial step involves the formation of the tetrahydrothiophene ring by [3 + 2] cycloaddition of a properly substituted thiocarbonyl ylide with a maleic or fumaric acid derivative (Scheme 5.27). As precursors of the thiocarbonyl ylides, compounds 25a, 72, and 73 were used. Further conversion of cycloadducts 74 into biotin (75) required several additional steps including a Curtius rearrangement to replace the carboxylic groups at C(3) and C(4) by amino moieties. [Pg.332]

The first diastereoselective synthesis of a tetrahydrothiophene derivative was reported by Karlsson and Hdgberg (32,95). The parent ylide la was added to a variety of C,C-dipolarophiles (79) bearing (—)-(15)-2,10-camphorsultam as the chiral auxiliary group to exclusively give trans-cycloadducts 80a,b with high diastereoselectivity [diastereomeric ratio (dr) 9 1], (Scheme 5.28). [Pg.334]

An intramolecular cycloaddition reaction was also used in the synthesis of the annelated tetrahydrothiophene (97), starting from l,3-oxathiolan-5-one (96) (131) (Scheme 5.36). Thiocarbonyl ylide formation occurred by thermal extrusion of CO2 at 250 °C, yielding 97 in 62% yield. [Pg.337]

The enantiomeric synthesis of rranj-3,4-disubstituted tetrahydrothiophenes using a sulfur ylide cycloaddition has been reported <990L1667>. The sulfur ylide derived from the action of cesium fluoride on sulfide 111 underwent an asymmetric cycloaddition with chiral a,p-unsaturated camphorsultam amide 112 giving tetrahydrothiophene 113 (80% de). The configuration was confirmed by cleavage of the chiral auxiliary followed by reductive desulfurization with Raney-Ni which gave known carboxylic acid 114. [Pg.103]

Biotin (6.24) consists of an imidazole ring fused to a tetrahydrothiophene ring with a valeric acid side chain. Biotin acts as a co-enzyme for carboxylases involved in the synthesis and catabolism of fatty acids and for branched-chain amino acids and gluconeogenesis. [Pg.200]

Scheme 1. Synthesis of cis/trans stereoisomers of 2-methyl-3-(2-methyl-3-tetrahydrothienylthio)-furan and 2-methy1-3-(2-methyl-3-thienylthio)-tetrahydrothiophene... Scheme 1. Synthesis of cis/trans stereoisomers of 2-methyl-3-(2-methyl-3-tetrahydrothienylthio)-furan and 2-methy1-3-(2-methyl-3-thienylthio)-tetrahydrothiophene...
Scheme 3. Synthesis of 2-methy1-2-(2-methy1-3-thieny1-thio)-tetrahydrothiophene 14 and 2-methy1-3-(2-me thy1-2-te tr ahydro thie ny 1 thio ) - f uran 5... Scheme 3. Synthesis of 2-methy1-2-(2-methy1-3-thieny1-thio)-tetrahydrothiophene 14 and 2-methy1-3-(2-me thy1-2-te tr ahydro thie ny 1 thio ) - f uran 5...
The synthesis of quinolizidine (3-spiro-2 )-tetrahydrothiophene (67a, 67b), a model compound for the synthesis of dimeric sulfur alkaloids, was reported (65, 66). The compound was prepared from 2-cyanotetrahydrothiophene (66) by two independent routes, both utilizing phase-transfer catalysis (Scheme 10). [Pg.241]


See other pages where Tetrahydrothiophenes, synthesis is mentioned: [Pg.14]    [Pg.285]    [Pg.287]    [Pg.290]    [Pg.290]    [Pg.94]    [Pg.172]    [Pg.247]    [Pg.170]    [Pg.1022]    [Pg.143]    [Pg.99]    [Pg.140]    [Pg.334]    [Pg.674]    [Pg.588]    [Pg.78]    [Pg.13]    [Pg.85]    [Pg.88]    [Pg.893]    [Pg.9]    [Pg.114]    [Pg.558]    [Pg.397]    [Pg.469]    [Pg.188]   
See also in sourсe #XX -- [ Pg.6 , Pg.9 ]




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