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1.
Earlier1 it was reported that 4-aryl-4,5-dihydrothiophene-1,1-dioxides (I) are converted in aqueous and alcohol solution of bases to isomeric 3-aryl-2,5-dihydrothiophene dioxides (II) and 3-aryl-4,5-dihydrothiophene-1,1-dioxides (III) (Fig. 1).In the presence of electron-donor substituents in the p-position of the phenyl ring, IIb, c compounds are practically irreversibly isomerised to III b, c. For unsubstituted phenyldihydrothiophene-1,1-dioxides IIa and IIIa the reaction proceeds riversibly but equilibrium is shifted towards isomer IIIa indicating its high thermodynamic stability. It is known2 that 2,5-dihydrothiophene-1,1 -dioxide is more stable than 4,5-dihydrothiophene-1,1-dioxide. Consequently, the observed stability increase of 3-aryl-4,5-dihydrothiophene-1,1-dioxides (IIIa–c) is due to interaction of the substituent C6H4X with the sulfonyl group. This paper investigates the nature of this interaction.  相似文献   

2.
A series of potential biologically active 2-[3-(4-phenyl-1-piperazinyl)propyl]-3-(4-substituted-benzoyl)-4-hydroxy-2H-1,2-benzothiazine 1,1-dioxides was synthesized in a straightforward manner by condensation of respective 3-substituted-4-hydroxy-1,2-benzothiazine 1,1-dioxides with 1-(1-chloropropyl)-4-phenylpiperazine. The structures of all of the newly formed compounds were identified by elemental analysis, FTIR and 1H NMR. The synthesized compounds were subjected to preliminary evaluation using differential scanning calorimetry (DSC) to determine the existence of multiple crystal forms. The DSC scans for all compounds show more than one endothermic effect, which might suggest dynamic proton transfer between two or three possible tautomeric forms: O-keto/O-enol, O-enol/O-keto and O-keto/O-keto/CH2 in crystals 2-[3-(4-phenyl-1-piperazinyl)propyl]-3-(4-substituted-benzoyl)-4-hydroxy-2H-1,2-benzothiazine 1,1-dioxides.  相似文献   

3.
The carbon signals of the 2-acylamino-4H-1,3,4-thiadiazino[5,6-b]quinoxalines 1a,b , 2-acylamino-4H-1,3,4-thiadiazino[5,6-b]quinoxaline 1,1-dioxides 2a,b , and 2-amino-4H-1,3,4-thiadiazino[5,6-b]quinoxaline 3 in deuteriodimethyl sulfoxide and in deuteriotrifluoroacetic acid were assigned by the nmr (HMBC, HMQC) spectroscopy. The comparison of the carbon chemical shifts in deuteriodimethyl sulfoxide with those in deuteriotrifluoroacetic acid clarified that compounds 1a, 1b , and 3 were deuterized at the N5-position in deuteriotrifluoroacetic acid, while the 1,1-dioxides 2a,b did not undergo the N5-deuteration in deuteriotrifluoroacetic acid.  相似文献   

4.
Andrew M. Moiseev 《Tetrahedron》2006,62(17):4139-4145
Diels-Alder reactions of thiophene-1,1-dioxides with strong electron withdrawing groups (EWG) were studied experimentally and theoretically. Thiophene-1,1-dioxides with two strong EWG behave as dienophiles and regio- and stereoselectively react with cyclopentadiene to give [2+4] cycloadducts 2a-c, which are derivatives of benzothiophene. In contrast, thiophene-1,1-dioxides with one EWG behave as dienes in the inverse electron demand Diels-Alder reaction yielding dihydro-1H-indenes derivatives. Cope [3,3]-sigmatropic rearrangement of adducts 2a-c was also demonstrated. MP2 calculations successfully rationalize the contrasting regioselectivities of these cycloaddition reactions.  相似文献   

5.
Researches on the synthesis of sulfur-containing heterocyclic compounds at the G. K. Boreskov Institute of Catalysis, Siberian Branch of the Russian Academy of Sciences, are reviewed. They include the synthesis of thiolane by the recyclization of THF in hydrogen sulfide; the synthesis thiacycloalkanes by the hydrogenation of thiophenes; the synthesis of 4-methylthiazole by the reaction of SO2 with methylisopropylideneamine; the synthesis of thiophenes by the heterocyclization of aliphatic compounds of sulfur and dehydrogenation of thiacycloalkanes; the synthesis of thiolane 1,1-dioxide by the hydrogenation of 2- and 3-thiolene 1,1-dioxides and 3-alkoxythiolane 1,1-dioxides; the synthesis of sulfoxides by the oxidation of thiacycloalkanes with atmospheric oxygen.  相似文献   

6.
Ring Enlargement of 1,2-Thiazol-3(2H)-one-1,1-dioxides and 3-Amino-2H-azirines to 4H-1,2,5-Thiadiazocin-6-one-1,1-dioxides Reaction of 3-amino-2H-azirines 2 with the 1,1-dioxides 4 and 7 of 1,2-thiazol-3(2H)-ones and 1,2-thiazoli-din-3-ones, respectively, in i-PrOH at room temperature leads to 4H-1,2,5-thiadiazocin-6(5H)-one-1,1-dioxides 5 (Scheme 2, Table) and the corresponding 7,8-dihydro derivatives 8 (Scheme 4), respectively. The structure of some of the new 8-membered heterocycles as well as the structure of the minor by-product 6 (Scheme 3) have been established by X-ray crystallography (Chapt. 4). The proposed reaction mechanism for the ring expansion to 5 and 8 (Scheme 2) is in accordance with previously published results of reactions of 2 and NH-acidic heterocycles and is further supported by the results of the reaction of 4a and the (1-15N)-labelled aminoazirine 2a *.  相似文献   

7.
Abstract

Alkyl 2-mercaptophenyl ketones react with trifluoroacetic anhydride in the presence of triethylamine to give 2-(trifluoromethyl)-4H-thiochromen-4-ones, which are transformed into the corresponding pyrazoles by treatment with hydrazine hydrate and into 1,1-dioxides by oxidation with H2O2 in AcOH.  相似文献   

8.
The reaction of lanthanide shift reagent Eu(FOD)3 with 3-phenyl- and 3- and 4-chloro-2-thiolene 1,1-dioxides and with 3-phenyl-3-thiolene 1,1-dioxide was investigated by PMR spectroscopy. The geometrical structure of the adduct of the lanthanide shift reagent with 4-chloro-2-thiolene 1,1-dioxide was found.Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 3, pp. 314–317, March, 1984.  相似文献   

9.
The reaction of N-n-butyl and N-benzylsulfamides with diketene in acetic acid solution in the presence of mercuric cyanide as a catalyst, afforded the corresponding 5-methyl-2-substituted-2H-1,2,6-thiadiazin-3(6H)one 1,1-dioxides. The reaction of the above mentioned sulfamides with diketene in an aqueous alkaline medium resulted in the isolation of the corresponding N-aceto-acetyl-N' -substituted-sulfamides, which were then converted into 5-methyl-6-substituted-2H-1,2,6-thiadiazin-3(6H)one 1,1-dioxides. Catalytic hydrogenation of the 5-methyl-2- and 6-n-butyl-2H-1,2,6-thiadiazin-3(6H)one 1,1-dioxides furnished the corresponding dihydro-derivatives. The structures of the isomeric 1,2,6-thiadiazine 1,1-dioxide derivatives obtained were assigned on the basis of nmr spectroscopic studies.  相似文献   

10.
A new four-step synthesis of 3,4- and 3,6-dihydro-2H-thiopran-1,1-dioxides from dihydro-2H-thiopyran-3(4H)-one is reported. The title compounds are synthesized starting with oxidation of the ketone with a 30% aqueous solution of hydrogen peroxide in a mixture of AcOH-Ac2O. The keto group is then reduced by sodium borohydride followed by mesylation and elimination of methanesulfonic acid under basic conditions (pyridine for 3,4-isomer and aqueous NaOH for 3,6-isomer). This sequence is simpler, than previously known methods, uses cheaper and more readily available reagents, and leads to 2H-thiopran-1,1-dioxides on multigram scale with 64% and 74% total yields, respectively. The structure and purity of the compounds were confirmed by 2D NMR and GCMS methods. The proposed method expands the means to access functionalized cyclic sulfones as building blocks in the synthesis of combinatorial libraries of new biologically active compounds.  相似文献   

11.
Ring Enlargement of Six- to Nine-Membered Heterocycles: Reaction of 3-(Dimethylamino)-2,2-dimethyl-2H-azirine with 3,4-Dihydro-2H-1,2,4-benzothiadiazin-3-one 1,1-Dioxides Reaction of 3-(dimethylamino)-2,2-dimethyl-2H-azirine ( 1 ) and N-substituted 3,4-dihydro-2H-1,2,4-benzothiadiazin-3-one 1,1-dioxides ( 4 ) in CHCl3 yields 3-(dimethylamino)-4,5,6,7-tetrahydro-1,2,5,7-benzothiatriazonin-6-one 1,1-dioxides 5 , a novel nine-membered heterocyclic system, by ring enlargement (Schemes 2 and 4). In refluxing MeOH, the heterocycle 5a rearranges to give the N-[1-methyl-1-(1,1-dioxo-4H-1,2,4-benzothiadiazin-3-yl)ethyl]-N′, N′-dimethylurea 10 . The three isomeric 2-(methylamino)benzenesufonamides 8,9 , and 11 (Scheme 3) are obtained by naBH4 reduction of 5a and 10 , respectively. Mechanisms for the thermal isomerization 5a → 10 and the NaBH4 reduction of 5a are proposed in Schemes 5 and 6.  相似文献   

12.
Convenient synthetic approaches for α-CF3- and α-CCl3 substituted pyridines, hydrogenated pyridines, azanorbornenes, 4H-1,2,4-thiadiazine- and 2H-1,2,6-thiadiazine-1,1-dioxides were developed on the basis of cycloaddition and cyclocondensation reactions of trihaloethaneimines and imidoyl chlorides.  相似文献   

13.
Oxidation of 2-benzenesulfonylaminoisothiazolium salts 1, 2 and their imines 3, 4 with hydrogen peroxide gave 1,2,3-thiadiazine 1-oxides 5, 6, which were converted into the corresponding 1,2,3-thiadiazine 1,1-dioxides 7, 8 using m-chloroperoxybenzoic acid. Oxidation of 5, 6 with hydrogen peroxide furnished isothiazol-3(2H)-one 1,1-dioxides 9, 10 as ring contraction products.  相似文献   

14.
The activity and selectivity of sulfides of group VI–VIII metals in the liquid-phase hydrogenation of thiolene-1,1-dioxides were studied at elevated hydrogen pressure. The generation of thiolane-1,1-dioxide is accompanied by the substrate decomposition, which is especially intensive for 3-thiolene-1,1-dioxide hydrogenation. These processes follow absolutely independent routes. The catalytic activity of sulfides in the generation of thiolane-1,1-dioxide decreases in the following row: PdS>Rh2S3>Re2S7>OsS2>PtS2>CoOS>WS2>RuS2 >NiOS.  相似文献   

15.
The dichloro-β-lactam ring, obtained via Staudinger reaction of 4-aryl-2H-1,3-benzothiazines, proved to be a useful protecting strategy for the synthesis of 4-aryl-2H-1,3-benzothiazine 1,1-dioxides. After oxidation of the 1,1-dichloroazeto[2,1-c][1,3]-benzothiazin-2-ones, the thiazine ring could be recovered selectively and in good yield by treatment with base. Thus, novel 4-aryl-2H-1,3-benzothiazine 1,1-dioxides were obtained efficiently.  相似文献   

16.
Alkyl and aryl N-substituted 1,2,5-thiadiazolidine and 1,2,6-thiadiazinane 1,1-dioxides 6 were synthesized in good yields from the reaction of sulfuryl chloride with 2-chloroethylamine or 3-chloropropylamine hydrochlorides, respectively, followed by treatment with a primary amine and triethylamine, and ring closure with K2CO3 in DMSO.  相似文献   

17.
We describe a practical and elegant method of constructing a thiazine ring fused with benzene under mild reaction conditions. A variety of 4-iodo-2H-benzo[e][1,2]thiazine-1,1-dioxides were prepared with high regioselectivity via a two-step process involving Pd/C-mediated C-C coupling of o-halobenzenesulfonamides with terminal alkynes, followed by iodocyclization of the resulting o-(1-alkynyl)arenesulfonamide using elemental iodine in acetonitrile. The coupling reaction was carried out using 10% Pd/C-PPh3-CuI as a catalyst system in the presence of Et3N. The process worked well for bromides and iodides, and a wide array of terminal alkynes containing alkyl and aryl substituents were employed. The iodocyclization step tolerated a variety of functional groups such as hydroxy, chloro, cyano, and methoxy, producing the six-membered heterocyclic ring selectively. The resulting 4-iodo-2H-benzo[e][1,2]thiazine-1,1-dioxides participated in Sonogashira, Heck, and Suzuki reactions producing a wide range of functionally substituted benzothiazines in good yields.  相似文献   

18.
At 0° in MeCN, 2,2-disubstituted 3-amino-2H-azirines 1 and 4,4-disubstituted 1,2-thiazetidin-3-one 1,1-dioxides 7 react smoothly to give 1,2,5-thiadiazepin-6-one 1,1-dioxides of type 8 (Scheme 2). The reaction mechanism of this regiospecific ring enlargement to seven-membered heterocycles follows previously described pathways. The structures of 7a and 8b were established by X-ray crystallography (see Figs. 1 and 2).  相似文献   

19.
The base-mediated cyclization of N,O-dimesylate derivatives of cyclic and acyclic amino alcohols provides a simple access to five- and six-member sultams: isothiazolidine-1,1-dioxides and thiazinane-1,1-dioxides respectively.  相似文献   

20.
The Thorpe-Ziegler intramolecular cyclization of 2-RCH2S-, 2-RCH2S(O)-, and 2-RCH2SO2-substituted nicotinic acid esters and nitriles (R is alkyl, aryl, and 2-thienyl) upon the action of potassium tert-butoxide has been studied. The reaction results in the formation of the corresponding 2-R-substituted 3-aminothieno[2,3-b]pyridines, 3-aminothieno[2,3-b]pyridine 1-oxides, and 3-aminothieno[2,3-b]pyridine 1,1-dioxides with the reaction taking place only in the case if R is aryl or 2-thienyl. Methyl esters of 2-RCH2S-, 2-RCH2S(O)-, and 2-RCH2SO2-substituted nicotinic acids also undergo the intramolecular cyclization of the Dieckmann type to form the corresponding 2-R-substituted 3-hydroxythieno[2,3-b]pyridines, thieno[2,3-b]pyridin-3(2H)-one 1-oxides, and thieno[2,3-b]pyridin-3(2H)-one 1,1-dioxides. Such a reaction takes place for all the R groups except when R = AlkCH2S and AlkCH2S(O).  相似文献   

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