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Thiophene-5,5-dioxides

Melles and Backer " found, from a study of the oxidation of substituted thiophenes with perbenzoic or peracetic acid, that sulfones could be obtained from polysubstituted methyl- and phenyl-thiophenes and that the presence of electron-attracting groups, such as nitro, hindered the oxidation. Oxidation of thiophene - led to a product which was formed through a Diels-Alder reaction between the intermediate thiophene sulfoxide (211) and thiophene sulfone (212) and for which two alternative structures, (213) or (214), were suggested. Similar sesquioxides were also obtained from 2- and 3-methylthiophene and 3-phenylthiophene. The structures were not proved. Bailey and Cummins synthesized thiophene-1,1-dioxide... [Pg.106]

The whole reaction pattern of the thiophene-1,1-dioxides is thus characteristic of unsaturated, and not of aromatic, compounds. [Pg.108]

Addition of amines to a,/J-unsaturated sulfones has been used in synthesis of key intermediates of biotin. In this reaction, benzylamine serves first as a base in the reaction with 60 to afford thiophene 1,1-dioxide (61) and also as a nucleophile to introduce two amino groups (equation 57)49. [Pg.776]

Thiophene 1,1-dioxide (61) is too unstable to isolate and dimerizes with loss of S02 to give 3a, 7a-dihydrobenzothiophene 1,1-dioxide (172) in 34%113. However, alkyl-substituted thiophene 1,1-dioxides can serve as dienes in the Diels-Alder reaction, since the aromatic properties of the thiophene nucleus are lost completely and the n-electrons of the sulfur atom are used for forming the bond with oxygen. The sulfones 173-178 are found to react with two moles of maleic anhydride at elevated temperature to give bicyclic anhydrides114. Thus, at high reaction temperature, S02 is split off to give cyclohexadiene... [Pg.800]

An interesting cycloheptatriene (182) synthesis has been described using thiophene 1, 1-dioxides (180) and cyclopropenes 181 (equation 121)ns. Concerted [4 + 2]cycloaddition and subsequent cheletropic extrusion of sulfur dioxide are suggested by the second-order kinetics (first in each reactant), and by the large negative activation entropy. [Pg.801]

Tetrahydro-thiophen-l,l-dioxidc werden als Anionen von Lithiumalanat unter Ringverengung zu Cyclo-butenen reduziert3. 3,4-Dihydro-thiophen-1,1 -dioxide liefern dagegen offenkettige Diene4. [Pg.451]

Nakayama J., Sugihara Y. Chemistry of Thiophene 1,1-Dioxides Top. Curr. Chem. 1999 205 131-195... [Pg.305]

Nakayama J,SugiharaY (1999) Chemistry of Thiophene 1,1-Dioxides. 205 131-195 Namboothiri INN, Hassner A (2001) Stereoselective Intramolecular 1,3-Dipolar Cycloadditions. 216 1-49... [Pg.204]

Dichloro thiophene 1,1-dioxide (168) is stable and of particular interest in the Diels-Alder reactions . Thus, when 168 is treated with cyclopentadiene in acetone, adducts... [Pg.799]

TABLE 14. Reaction of furans and halogenated thiophene 1,1-dioxides ... [Pg.804]

The [2 + 2] photodimerization of a, j8-unsaturated sulfones is correctly viewed as a photoreaction of alkenes, rather than the sulfone group, and this aspect has been reviewed recently by Reid, as part of a wider survey of the photoreaction of O- and S-heterocycles. The topic continues to attract considerable interest and a few recent examples, as well as some synthetic applications, will be discussed here. Much of the photodimerization work has been carried out on the benzo[fc]thiophene (thianaphthene) 1,1-dioxide system. For example. Porter and coworkers have shown that both 3-carboxybenzo[i]thiophene 1,1-dioxide (65) and its methyl ester give only the head-to-head (hth), anti dimer (66) on irradiation in ethanol. In a rather unusual finding for such systems, the same dimer was obtained on thermal dimerization of 65. Similar findings for a much wider variety of 3-substituted benzo[fi]thiophene 1,1-dioxides have been reported more recently by Geneste and coworkers . In the 2-substituted analogs, the hth dimer is accompanied by some of the head-to-tail (htt), anti dimer. The formation of the major dimer appears to proceed by way of an excited triplet and the regiochemistry observed is in accord with frontier MO theory. [Pg.884]

Oxidation of thiophene and its derivatives was studied using hydrogen peroxide (H2O2), t-butyl-hydroperoxide and Ti-Beta redox molecular sieve as selective oxidation catalysts. A new reaction pathway was discovered and investigated using C-13 NMR, GC, GC-MS, HPLC, ion chromatography, and XANES. The thiophene oxidized to thiophene-sesquioxide [3a,4,7,7a-tetrahydro-4,7-epithiobenzo[b]-thiophene 1,1.8-trioxide] and the sesquioxide oxidized mostly to sulfate. 2-Methyl-thiophene and 2,5 dimethylthiophene also oxidized to sulfate and sulfone products. The Benzothiophene oxidation product was sulfone. This proposed new reaction pathway is different from prior literature, which reported the formation of thiophene 1,1-dioxide (sulfone ) as a stable oxidation product... [Pg.263]

Dipolar cycloaddition of 2,4-(trimethylsilyl)- and 2,4-(trimethylgermyl)-substituted thiophene-1,1-dioxides as well as silylated 2,2 -bithiophene-1,1-dioxides was investigated. It was shown that only the C(4)=C(5) double bond of 2,4-disubstituted thiophene-1,1-dioxides interacts with acetonitrile oxide to give thienoisoxazoline dioxides. Bithiophene derivatives were inactive or their reaction with nitrile oxide was accompanied by desilylation. Cycloaddition of benzonitrile oxide with all mentioned sulfones did not occur. The molecular structure of 3a-methyl-5.6a-bis(trimethylgermyl)-3a,6a-dihydrothieno 2.3-c/ isoxazole 4,4-dioxide was established by X-ray diffraction (263). ... [Pg.38]

The sulphones of thiophene are not known due to their instability at room temperature. However, derivatives of such compounds were isolated and described (4). The piperidine derivatives could be isolated and identified as their picrates. Thus, 3,4-dibromothioacyclopentane-1,1-dioxide when treated with pyridine and then with piperidine yielded 3-(l-piperidyl)-4-thiacyclopentene-l,1-dioxide, which was isolated in pure form as its picrate. The thiophene-1,1-dioxide yielded wdth maleic anhydride a compound corresponding to 3a,4,5,6,7,7a-hexahydro-4,7-endovinylene-5,6-thianaphthenedicarboxylic anhydride-1,1-dioxide. On standing the thiophene sulphone yielded 3a.4,4a,7a,8,8a-hexahydro-... [Pg.136]

The 4a,9b double bond in 1,2,3,4-tetrahydrodibenzothiophene 5,5-dioxide (68) and similar compounds, is essentially nonaromatic and in this respect resembles the 2,3 bond in benzo[6]thiophene 1,1-dioxide. Catalytic reduction of 68 results in the formation of l,2,3,4,4a,9b-hexahydrodibenzothiophene 5,5-dioxide (92 /o). Subsequent reduction of the sulfone with LAH yields 1,2,3,4,4a,9b-hexahydrodibenzothiophene (69) as an oil (78 /o). Oxidation of 4-keto-l,2,3,4-tetrahydrodi-benzothiophene (44a) to its sulfone with peracetic acid (63 /o) followed by... [Pg.237]


See other pages where Thiophene-5,5-dioxides is mentioned: [Pg.72]    [Pg.137]    [Pg.108]    [Pg.20]    [Pg.686]    [Pg.801]    [Pg.884]    [Pg.464]    [Pg.230]    [Pg.85]    [Pg.686]    [Pg.801]    [Pg.265]    [Pg.91]    [Pg.96]    [Pg.102]    [Pg.278]    [Pg.399]   
See also in sourсe #XX -- [ Pg.106 , Pg.107 ]

See also in sourсe #XX -- [ Pg.94 ]

See also in sourсe #XX -- [ Pg.94 , Pg.99 ]

See also in sourсe #XX -- [ Pg.106 , Pg.107 ]




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1,3-Dihydrobenzo thiophene 2,2-dioxide

1.3- Dihydrobenzo(c]thiophene 2,2-dioxide

5- Bromobenzo thiophene dioxide

Benzo thiophene 2,2-dioxides 1.3- dihydro

Benzo thiophene-1,1-dioxide

Electron transport thiophene-5,5-dioxides

Fluorene-thiophene-5 ,5-dioxide copolymers

Nitrobenzo thiophene dioxide

Quinodimethanes from benzo thiophene dioxides

Reaction at Sulphur Thiophen Dioxides

Thieno thiophene-1,1 -dioxide

Thiophene 1,1-dioxides, 2,5-dihydro

Thiophene 1,1-dioxides, decomposition

Thiophene 1,1-dioxides, reactivity

Thiophene dioxides reactions

Thiophene dioxides rearrangement

Thiophene dioxides synthesis

Thiophene, 2,5-dihydro-3-methyl 1-dioxide

Thiophene, Tetrahydro-, 1,1-dioxide

Thiophene-1,1-dioxides, cycloaddition

Thiophene-1,1-dioxides, cycloadditions

Thiophene-5,5-dioxides molecular structure

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