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1.
The target compounds 6,6′‐(1,4‐phenylenedimethylene)‐bis(3‐thioxo‐1,2,4‐triazin‐5(1H )‐one) 4,5 were prepared from reaction of oxazolone 1 with thiosemicarbazide and 4‐phenylthiosemicarbazide, in potassium hydroxide solution, respectively. Reaction of 4 with hydrazonoyl halides 6 afforded triazolotriazine derivatives 7 . Also, 5 reacted with 6 to give the corresponding substitution products 8 . Antimicrobial and antitumor activities for some compounds were studied.  相似文献   

2.
C‐acyl‐N‐(3‐phenyl‐5‐pyrazolyl)hydrazonoyl chlorides 1a,b react with potassium thiocyanate and potassium selenocyanate to give 5‐acyl‐2,3‐dihydro‐2‐imino‐3‐(3′‐phenyl)pyrazol‐5′‐yl)‐1,3,4‐thiadiazoles 2a,b and 5‐acetyl‐2,3‐dihydro;‐2‐imino‐3‐(3′‐phenyl)pyrazol‐5′‐yl)‐1,3,4‐selenadiazole 10a,b . Also, 2‐[mercapto‐(methylthio)methylene]indan‐1,3‐dione 16 reacts with hydrazonoyl halides 15 and 22–25 to afford 2,3‐dihydro‐1,3,4‐thiadiazoles 19 and 26–29 , respectively. Structures of the newly synthesized compounds are elucidated on the basis of spectral data, chemical transformations, and alternative synthesis methods. © 2001 John Wiley & Sons, Inc. Heteroatom Chem 12:468–474, 2001  相似文献   

3.
Reaction of 1,3,4‐oxadiazolyl‐phenylthiourea 3 with hydrazonoyl halides gave the corresponding 1,3,4‐oxadiazolylimino‐1,3,4‐thiadiazoles. Also, treatment of 3 with ethyl chloroacetate and α‐haloketones afforded the corresponding thiazolidinone and thiazole derivatives, respectively. The structures of the synthesized products were confirmed by spectral data. Ten compounds were evaluated for their anti‐cancer activity against the colon carcinoma cell line (HCT‐116). The results revealed that 1,3,4‐thiadiazole derivatives 13d and 19c (IC50 = 0.73 and 0.86 µg/mL, respectively) have promising antitumor activity against colon carcinoma (HCT‐116), and most of the tested compounds showed moderate anti‐cancer activity.  相似文献   

4.
The bis‐thiosemicarbazone derivative 3 was prepared and reacted with N‐aryl‐2‐oxopropane hydrazonoyl chloride 4a‐g and ethyl (N‐arylhydrazono)chloroacetate 7a‐e in absolute ethanol in the presence of triethylamine at reflux afforded a new series of thiazoles 6a‐g and 9a‐e , respectively. Also, thiosemicarbazone derivative 3 was reacted with N′‐phenylbenzohydrazonoyl chloride 10 to give the respective bis‐thiadiazole derivative 12 . Moreover, the reaction of 3 with a number of haloketones and haloesters furnished the respective bis‐thiazole derivatives 14 , 16 , 18 , and 20 . The mechanisms that account for formation of products 6 , 9 , and 12 were discussed. Also, the molecular structure of the synthesized compounds was illustrated by spectroscopic and elemental analysis.  相似文献   

5.
2‐(2‐(1‐(1H‐Indol‐3‐yl)ethylidene)‐hydrazinyl)‐4‐substituted 5‐(aryldiazenyl)thiazoles and 5‐((1‐(1H‐indol‐3‐yl)ethylidene)hydrazono)‐2‐substituted‐4‐phenyl‐4,5‐dihydro‐1,3,4‐thiadiazoles were synthesized via reaction of hydrazonoyl halides and 2‐(1‐(1H‐indol‐3‐yl)ethylidene)hydrazine‐1‐carbothioamide and alkyl 2‐(1‐(1H‐indol‐3‐yl)ethylidene)hydrazine‐1‐carbodithioate in ethanolic triethylamine. Structures of the newly synthesis were elucidated on the basis of elemental analysis, spectral data, and alternative synthetic route whenever possible.  相似文献   

6.
New series of substituted thiazole and thiadiazoles were prepared starting from N ′‐(3,4‐dihydronaphthalen‐1(2H )‐ylidene)hydrazinecarbothiohydrazide by reacting with different types of hydrazonoyl chlorides. In addition, 7‐(4‐chlorophenyl)‐5,6,6a,7‐tetrahydrobenzo [b ]naphtha‐[1,2‐e ][1,4]thiazepine reacted with hydrazonoyl halides to afford a new derivatives of 7‐(4‐chlorophenyl)‐14‐phenyl‐5,6,6a,7‐tetrahydro‐16H‐benzo[b]naphtho[1,2‐e][1,2,4]triazolo[4,3‐d ][1,4]thiazepine. Structures of the newly synthesized compounds were elucidated on the basis of elemental analyses and spectral data.  相似文献   

7.
2,3‐Dihydro‐1,3,4‐thiadiazoles, pyrazoles, pyrazolo[3,4‐d]pyridazines, thieno[2,3‐b]pyridines, pyrim‐idino[4′,5′:4,5]thieno[2,3‐b]pyridines and pyrrolo[3,4‐d]pyrazoles were obtained in a good yields by treatment of hydrazonoyl halides with each of alkyl carbodithioates, 3‐(dimethylamino)‐1‐naphtho[1,2‐d]furan‐2‐ylprop‐2‐en‐1‐one and N‐arylmalemides.  相似文献   

8.
Treatment of 2‐cyano‐N′‐(1‐(pyridin‐2‐yl)ethylidene)acetohydrazide 1 with aromatic/heterocyclic aldehydes 2a–f gave arylidene derivatives 3a–f . Polysubstituted pyridine derivatives 4a,b were prepared either from reaction of arylidene 3a,b with malononitrile or from reaction of acetohydrazide 1 with arylidenemalononitrile 5a,b . Cyclocondensation of acetohydrazide 1 with salicylaldehyde derivatives and acetylacetone furnished pyrido‐coumarins 6,7 and 2‐pyridone‐3‐carbonitrile 8, respectively. In addition, pyrido‐thiazoles 13 and 15 were obtained through reaction of 2‐(1‐(pyridin‐2‐yl)ethylidene)hydrazinecarbothioamide 11 with hydrazonyl chlorides and α‐haloketones, respectively. The structures of synthesized compounds were elucidated with spectral and elemental data. The antimicrobial activity of the synthesized compounds was studied.  相似文献   

9.
The pyridinium salts 2a,b reacted with dimethyl acetylenedicarboxylate (DMAD) to give the indolizine derivatives 6a,b . Pyridinium salts 2a,b also reacted with pyrazole‐5‐diazonium salt to afford the hydrazonoyl bromides 8a,b , which on treatment with aqueous ethanolic sodium carbonate furnished the 8aH‐1,2,4‐triazolo[4,3‐a]pyridine 10 . When sulfonium bromide 11 was treated with nitrous acid and with pyrazole‐5‐diazonium salt, it afforded the new hydroximoyl and hydrazonoyl halides 12 and 17 , respectively. Compound 12 reacted with 2‐methylthiobenzimidazole to furnish benzimidazo[1,2‐d]‐1,2,4‐oxadiazole derivative 14 . Treatment of either 12 with 3‐phenyl‐5‐aminopyrazole or 17 with triethylamine resulted in the formation of the same product: pyrazolo[1,5‐c]‐1,2,4‐triazole derivative 16 . © 2004 Wiley Periodicals, Inc. Heteroatom Chem 15:432–436, 2004; Published online in Wiley InterScience (www.interscience.wiley.com). DOI 10.1002/hc.20037  相似文献   

10.
The essential idea of the work in this article is mainly dependent on the use of bis‐hydrazonoyl halides for heterocyclic synthesis. The present work describes preparation and characterization of new bis‐thiazoles from reaction of bis‐hydrazonoyl chlorides with thiosemicarbazones. The synthetic Schemes for the final compounds are proposed and discussed. Structures of the final products were elucidated by elemental analyses and Fourier transform infrared, mass spectrometry, 1H, and 13C‐NMR spectra.  相似文献   

11.

Triazoles, thiadiazoles, and triazolo[4, 3-a]pyrimidines were synthesized via reaction of hydrazonoyl halides with each of 3-methyl-4-(methylthiothioxomethyl)-2-pyrazolin-5-one, 3-methyl-4-[methylthio(phenylamino)methyl]-2-pyrazolin-5-one, and pyrimidine-2-thiones. Structures of the newly synthesized compounds were elucidated on the basis of elemental analysis, spectral data, and alternative-methods synthesis whenever possible.  相似文献   

12.
3‐Methyl‐2‐benzofurancarboxylic acid hydrazide ( 2 ) reacts with carbon disulfide and pota‐ ssium hydroxide to give the corresponding potassium carbodithioate salt 3 . Treatment of the latter salt with hydrochloric acid, hydrazine hydrate, and with phen‐ acyl bromide afforded the corresponding 1,3,4‐oxadia‐ zole‐5‐thione 4 , 4‐amino‐1,2,4‐triazole‐5‐thione 5 , and thiazolidine‐2‐thione 9 derivatives, respectively. The reaction of either 1,3,4‐oxadiazole‐5‐thione 4 or 4‐amino‐1,2,4‐triazole‐5‐thione 5 with phenacyl bromide resulted in the formation of 1,2,4‐triazolo[3, 4‐b]‐1,3,4‐thiadiazine derivative 8 . Treatment of compounds 3 or 4 with hydrazonoyl halides 10a–d furn‐ ished the same 1,3,4‐thiadiazol‐2‐ylidene derivatives 11a–d . The 7‐arylhydrazono‐1,2,4‐triazolo[3,4‐ b ]‐1, 3,4‐thiadiazine derivatives 12a–d were obtained either by treatment of 4‐amino‐1,2,4‐triazole‐5‐thione 5 with hydrazonoyl halides 10a–d or by coupling of the 1,2,4‐triazolo[3,4‐b]‐1,3,4‐thiadiazine derivative 8 with diazonium salts. © 2005 Wiley Periodicals, Inc. Heteroatom Chem 16:621–627, 2005; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/hc.20162  相似文献   

13.
Novel bis‐thiazoles were synthesized in high and efficient yields from the reaction of thiosemicarbazones with halogenated compounds. Also, new bis‐triazolopyrimidines were prepared from the reaction of hydrazonoyl chlorides with bis‐thione derivative. All prepared compounds were fully characterized by spectral methods. The synthesized bis‐compounds will be attractive species for the medicinal researchers to investigate their biological activity.  相似文献   

14.
The chromene compound 1 is used as a key intermediate for synthesis of new heterocyclic compounds, and it reacted with hydrazonoyl chlorides in presence of TEA to give the amidrazone derivatives 3a , 3b , 3c , 3d , 3e , 3f , 3g , 3h , which were cyclized to the corresponding triazepines 5a , 5b , 5c , 5d , 5e , 5f , 5g , 5h on boiling with sodium ethoxide. Conversion of compound 1 to the methylthiocarbamate derivative 6 was performed through its reaction with carbon disulfide and KOH followed by treatment with methyl iodide. Compound 6 reacted with hydrazonoyl chlorides in presence of TEA to give thiadiazoles 8a , 8b , 8c , 8d , 8e , 8f , 8g . In addition, chromene 1 combined with aminodithiocarbamic acid in DMF under reflux to furnish the thiosemicarbazide derivative 9 , which in turn interacted with several hydrazonoyl chlorides to give the thiazole derivatives 11a , 11b , 11c , 11d , 11e . The structures of the prepared compounds were confirmed from their spectroscopic data and elemental analysis. The synthesized compounds were tested against both monoamine oxidase (MAO)‐A and MAO‐B and corrected to analyses showed good inhibitory activities especially against MAO‐A.  相似文献   

15.
A facile access to novel bis‐(indoline‐2,3‐dione) was achieved via reactions of isatin with 1,3‐dibromopropane. The utility of the versatile bis‐(indoline‐2,3‐dione) in the design of new multifunctional building blocks using condensation with hydrazine derivatives was demonstrated. Moreover, a new series of bis‐thiazoles and bis‐thiazol‐4(5H)‐ones were synthesized by the reaction of bis‐thiosemicarbazone derivative with various derivatives of hydrazonoyl halides. The calculations derived from X‐ray diffraction patterns indicated the nanosize of the newly designed compounds. The spectral data of the formed compounds were established their structures. Also, the cytotoxic activity of the produced derivatives was screened against line MCF‐7 (breast cancer cell). It was found that four derivatives from nine investigated compounds showed activity more potent than the standard drug used by 20 times in some cases.  相似文献   

16.
The reactions of 2‐amino‐4,5‐dihydro‐3‐furancarbonitriles 1a‐d with α,β‐unsaturated carbonyl compounds in the presence of sodium ethoxide (0.1 equivalent) gave the corresponding Michael adducts 2a‐d , 3a‐d and 4a‐d. Compounds 2a‐d and 3a‐c reacted with sodium alkoxide (1 equivalent) to yield the corresponding 7a‐alkoxyhexahydrofuro[2,3‐b]pyridines 5a‐d, 6a‐d, 7a‐c and 8a‐c . Treatment of 5a‐d, 6a‐d, 7a‐c and 8a‐c with potassium tert‐butoxide produced the corresponding dihydrofuro[2,3‐b]pyridines 9a‐d and 10a‐c . The reaction of 4a‐c with sodium ethoxide (1 equivalent) afforded the corresponding dihydro‐furo[2,3‐b]pyridines 11a‐c .  相似文献   

17.
4-Amino-5-ethyl-4H-1,2,4-triazole-3-thiol was used as a key intermediate for the synthesis of triazolo[3,4-b][1,3,4]thiadiazines, triazolo[4,3-b][1,2,4,5]tetrazines and Schiff’s base via reactions with various hydrazonoyl halides and salicyaldehyde, respectively. Moreover triazolyl-N-N′-triazole derivatives were prepared from reaction of Schiff’s base with various hydrazonoyl halides. The structures of all the newly synthesized heterocyclic compounds were established by considering elemental analysis and spectral data.  相似文献   

18.
The behavior of ethyl 2‐phenylthiocarb‐ amoyl acetate 1 toward a variety of several α‐halo‐ carbonyl compounds was investigated. Thus, reaction of 1 with α‐bromoketones, hydrazonoyl bromides, and 2‐chloro‐N‐arylacetamides afforded the corresponding dihydrothiazole, 1,3,4‐thiadiazole, and thiophene derivatives, respectively. The synthesis of thiazolidin‐4‐one 11 , thiazolidin‐5‐one 12 , and some azo derivatives of thiazolidin‐5‐one were described. 5‐Arylazothiazoles 17 and 19 were synthesized by condensation of hydrazonoyl bromides 3 with different thiourea derivatives. © 2006 Wiley Periodicals, Inc. Heteroatom Chem 17:299–305, 2006; Published online in Wiley InterScience ( www.interscience.wiley.com ). DOI 10.1002/hc.20206  相似文献   

19.
The reaction of 4‐thiochromane thiocarbohydrazone with a series of hydrazonoyl halides in dioxane in the presence of triethylamine afforded novel thiochromane derivatives incorporating 1,3‐thiazole moiety. The structure of the latter compounds was established by elemental analysis and spectral technique and by their chemical transformation. Moreover, the antimicrobial activity of the newly synthesized compounds was screened and the results showed that some compounds have higher activity than the applied fungicide and bactericide. The antimicrobial activity of the most active compounds was interpreted by molecular docking study.  相似文献   

20.
An efficient synthesis of enaminones 1a‐c is reported. Compounds 1a‐c reacted with diefhyl‐3‐amino‐2‐cyanopenten‐1,5‐dicarboxylate ( 3 ) to yield the benzonitriles 6 . On the other hand, the reaction of la‐c with 3‐amino‐2‐cyano‐2‐pentene dinitrile ( 7 ) afforded a mixture of benzonitriles 10 and pyridines 9 . The reaction of la‐c with 3‐aminocrotononitrile 11 has afforded the 4‐substituted‐3‐cyano‐2‐methylpyridines 15a‐c . The reaction of ethylene diamine with la‐c afforded 5‐substituted‐2,3‐dihydro‐lH‐[1,4]diazepines 18a‐c . On the other hand, la‐c reacted with o‐phenylenediamine to yield the 4‐(2‐aminopheynlamino)‐substituted enaminones 21 . Compounds 21 could be converted into the benzotriazolylenones 22 on treatment with sodium nitrite in acetic acid solution.  相似文献   

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