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1.
1‐(5‐Aryl‐[1,3,4]oxadiazol‐2‐ylmethyl)‐3‐(p‐methoxyphenyl)‐1H‐[1,8]naphthyridin‐2‐ones ( 5 ) were synthesized by the oxidative cyclization of [2‐oxo‐3‐(p‐methoxyphenyl)‐2H‐[1,8]naphthyridin‐1‐yl]acetic acid arylidene‐hydrazides ( 4 ) with alumina‐supported iodobenzene diacetate (IBD) in solvent‐free conditions under microwave irradiation. The products are obtained in good yields and in a state of high purity.  相似文献   

2.
A simple and efficient protocol for the synthesis of 5‐aryl‐2‐(2‐substituted‐1,8‐naphthyridin‐3‐yl)‐thiazolo[3,2‐b][1,2,4]triazoles ( 4 ) is achieved by cyclocondensation of 3‐(2‐substituted‐1,8‐naphthyridin‐3‐yl)‐1,2,4‐triazoles ( 3 ) with α‐halogenoketones in anhyd. methanol under microwave irradiation. The products are obtained in good yields and in a state of high purity.  相似文献   

3.
Reaction of 2‐(5‐substituted‐2‐hydroxybenzylamino)phenols ( 2 ) with formalin in ethanol under reflux has chemoselectively led to 2‐(6‐substituted‐2H—benzo[e][1,3]oxazin‐3(4H)‐yl)phenols ( 3 ) in good yield involving the ring closure of the hydroxyl group of the C‐aryl ring and not that of the N‐aryl ring.  相似文献   

4.
A regiospecific approach to each N‐methyl‐5‐(1H‐indol‐2‐yl)‐6,7‐dihydro‐2H‐indazole isomer is reported. The 1‐methyl isomer 1 was prepared from 5‐bromo‐1‐methyl‐6,7‐dihydro‐1H‐indazole 3 and indole‐2‐boronate 5 by palladium catalyzed Suzuki coupling. The 2‐methyl regioisomer 2 was synthesized via addition of lithium (1‐carboxylato‐1H‐indole‐2‐yl)lithium 6 with 2‐methyl‐2,4,6,7‐tetrahydro‐indazol‐5‐one 8 followed by acid catalyzed dehydration.  相似文献   

5.
The cyclocondensation reaction of compound 1 in boiling hydrochloric acid had an unexpected course. Instead of supposed 5,11‐dihydro‐quinoxalino[2,3‐b]quinoline 6a , 2‐(indol‐2‐yl)‐benzimidazole 4 was isolated as the major product.  相似文献   

6.
In this paper the regiospecific transformations of methyl 2‐(benzyloxycarbonyl)amino‐3‐dimethylaminopropenoate ( 1 ) with hydrazine, alkyl‐, aryl‐ and heteroaryl‐substituted hydrazines via the corresponding hydrazones 12‐16 into pyrazoles 17‐25 are described. Heteroaryl‐substitued hydrazones 13‐16 afforded by oxidation with bromine or lead tetraacetate the corresponding substituted (1,2,4‐triazolo[4,3‐b]pyridazin‐3‐yl)glycinates 27‐30 . Alkyl 2‐(2,2‐disubstituted‐1‐ethenyl)amino‐3‐dimethylaminopropenoates 31‐33 gave with hydrazines alkyl 2‐[2,2‐(disubstituted)ethenyl]amino‐3‐heteroarylhydrazonopropanoates 40‐48 and 2‐alkyl 2,3‐bis((hetero)arylhydrazono)propanoates 51‐55 .  相似文献   

7.
A number of 4‐aryloxymethyl‐6‐phenyl‐2H‐pyrano[3,2‐c][1,8]naphthyridin‐5(6H)‐ones ( 4a‐f ) are regioselectively synthesized in 72‐78% yield by the Claisen rearrangement of 4‐(4′‐aryloxybut‐2′‐ynyloxy)‐1‐phenyl‐1,8‐naphthyridin‐2(1H)‐ones ( 3a‐f ) in refluxing chlorobenzene for 4‐6 h. These products are then subjected to a second Claisen rearrangement catalyzed by anhydrous AlCl3 at room temperature for 2 h to give hitherto unreported pentacyclic heterocycles ( 5a‐f ) in 78‐85% yield.  相似文献   

8.
Treatment of ambident sodium salt of 2‐methylsulfanyl‐4(3H)‐quinazolinone with methyl bromoacetate resulted in N(3)‐alkyl ester formation. Reaction of the resulted ester with hydrazine hydrate gave 2‐methylsulfanyl‐4‐oxo‐3(4H)‐quinazolinyl)acetohydrazide, which underwent intramolecular cyclization under heating in dimethylformamide to give 1‐aminoimidazo[2,1‐b]quinazoline‐2,5(1H,3H)‐dione. The latter took place in acylation reaction and in condensation with aromatic aldehydes.  相似文献   

9.
A series of new 2,4‐diaminothieno[2,3‐d]‐ and 2,4‐diaminopyrrolo[2,3‐d]pyrimidine derivatives were synthesised. Reaction of 2‐amino‐4,6‐dichloropyrimidine‐5‐carbaldehyde ( 1 ) with ethyl mercaptoacetate, methyl N‐methylglycinate or ethyl glycinate afforded ethyl (2‐amino‐4‐chloro‐5‐formylpyrimidin‐6‐yl)thioacetate ( 2a ), methyl N‐(2‐amino‐4‐chloro‐5‐formylpyrimidin‐6‐yl)‐N‐methylglycinate ( 2b ) and ethyl N‐(2‐amino‐4‐chloro‐5‐formylpyrimidin‐6‐yl)glycinate ( 2c ), respectively. Compounds 2a,b by treatment with bases cyclised to the corresponding 2‐amino‐4‐chlorothieno‐ and pyrrolo[2,3‐d]pyrimidine‐6‐carboxylates ( 3a,b ). Heating 2,4‐diamino‐6‐chloropyrimidine‐5‐carbaldehyde ( 5 ) with ethyl mercaptoacetate or methyl N‐methylglycinate gave 2,4‐diaminothieno[2,3‐d]‐ and 2,4‐diaminopyrrolo[2,3‐d]‐pyrimidine‐6‐carboxylates ( 6a,b ), whereas compound 5 with ethyl glycinate under the same reaction conditions afforded ethyl N‐(2,4‐diamino‐5‐formylpyrimidin‐6‐yl)glycinate ( 7 ). Treatment of 2,4‐diaminothieno[2,3‐d]pyrimidine‐6‐carboxylic acid ( 8a ) with 4‐methoxy‐, 3,4,5‐trimethoxyanilines or ethyl N‐(4‐aminobenzoyl)‐L‐glutamate in the presence of dicyclohexylcarbodiimide and 1‐hydroxybenzotriazole furnished the corresponding N‐arylamides 9‐11.  相似文献   

10.
2,3,3‐Trimethylindolenine and 5‐chloro‐2,3,3‐trimethylindolenine were converted into β‐diformyl compounds by the action of the Vilsmeier reagent at 50°C. The dialdehydes reacted with various arylhydrazines and 2‐pyridylhydrazine to produce mono‐hydrazones as mixtures of cis and trans isomers. Heating the hydrazones in refluxing ethanol produced 3,3‐dimethyl‐2‐(1‐aryl‐1H‐pyrazol‐4‐yl)‐3H‐indoles in excellent yields. Reaction of the β‐diformyl compounds with hydrazine itself led directly to 3,3‐dimethyl‐2‐(pyrazol‐4‐yl)‐3H‐indoles.  相似文献   

11.
A series of 2‐(3‐(trifluoromethyl)‐5‐(alkoxy)‐1H‐pyrazol‐1‐yl)‐4‐aryloxypyrimidine derivatives were designed and synthesized. The structures of all the title compounds were confirmed by 1H NMR and elementary analysis. These compounds were screened for herbicidal activity against rape and barnyard grass. Compound B13 exhibited moderate herbicidal activity.  相似文献   

12.
2‐Benzoyl‐3‐phenylpent‐2‐ene‐1,5‐dinitrile 1 undergoes bromination with N‐bromosuccinimide (NBS) to afford the bromo derivative 2a . This bromo derivative undergoes reactions with sodium hydrogen sulfide, ethyl thioglycollate, hydroxylamine hydrochloride, hydrazines, cyanoacetamide, cyanacetohydrazide and urea derivatives to afford the thiophene 4 , 4H‐thiopyran 6 , 4H‐1,2‐oxazine 8 , 4H‐pyridazines 10a,b , the pyridine 15 , pyrrolo[1,2‐b]pyridazine 17 and the N‐substituted‐pyrrole derivatives 19a‐c respectively.  相似文献   

13.
E‐3‐(N,N‐Dimethylamino)‐1‐(3‐methylthiazolo[3,2‐a]benzimidazol‐2‐yl)prop‐2‐en‐1‐one ( 2 ) was synthesized by the reaction of 1‐(3‐methylthiazolo[3,2‐a]benzimidazol‐2‐yl)ethanone ( 1 ) with dimethylformamide‐dimethylacetal. The reaction of 2 with 5‐amino‐3‐phenyl‐1H‐pyrazole ( 4a ) or 3‐amino‐1,2,4‐(1H)‐triazole ( 4b ) furnished pyrazolo[1,5‐a]pyrimidine and 1,2,4‐triazolo[1,5‐a]pyrimidine derivatives 6a and 6b , while the reaction of enaminone 2 with 6‐aminopyrimidine derivatives 7a,b afforded pyrido[2,3‐d]pyrimidine derivatives 9a,b , respectively. The diazonium salts 11a or 11b coupled with compound 2 to yield the pyrazolo[5,1‐c]‐1,2,4‐triazine and 1,2,4‐triazolo[5,1‐c]‐1,2,4‐triazine derivatives 13a and 13b . Some of the newly synthesized compounds exhibited a moderate effect against some bacterial and fungal species.  相似文献   

14.
A novel series of 2,4‐disubstituted‐1,2,4‐triazolo[1,5‐a]quinazolin‐5(4H)‐ones were prepared by Dimroth rearrangement of their respective isomers namely 1,4‐disubstituted‐[1,2,4]triazolo[4,3‐a]‐quinazolin‐5(4H)‐ones. The latter were prepared via new synthetic strategy based on 1,5‐elecrocyclization of the respective N‐(4‐oxo‐3‐phenylquinazolin‐2‐yl)nitrilimines.  相似文献   

15.
Novel 11‐amino‐6‐aryl‐6,7‐dihydroindeno[1,2‐e] pyrimido[4,5‐b][1,4]diazepin‐5(5aH)‐ones 4a‐f were prepared regioselectively by the tricomponent reaction of 4,5,6‐triaminopyrimidine 1, 1,3‐indandione 2 and aromatic aldehydes 3a‐f. The bicomponent approach, using 2,4,5,6‐tetraaminopyrimidine 5 and 2‐aryl‐ideneindandiones 6a‐f as reagents, afforded 9,11‐diamino‐6‐aryl‐6,7‐dihydroindeno[1,2‐e]pyrimido[4,5‐b]‐[1,4]diazepin‐5(5aH)‐ones 7a‐f in good yields and the regioisomeric 8,10‐diamino derivatives 8a‐c in lower yields. Both, bi‐ and tricomponent approaches were performed by microwave irradiation and all products were fully characterized by detailed NMR measurements.  相似文献   

16.
Thermal cyclization reactions of N‐alkyl‐2‐benzylaniline 1a‐d and N‐alkyl‐N′‐phenyl‐o‐phenylenediamine 2a‐b were carried out expecting to get seven‐membered heterocyclic compounds. However, the results show that aside from the formation of the normally expected six‐membered ring products of acridine 5 , anthracene 6 , and phenazine 8 , thermal cyclization of N‐alkyl‐2‐benzylaniline and N‐alkyl‐N′‐phenyl‐o‐phenylenediamine also resulted to the unexpected formation of 2‐phenylindole 3 and 2,3‐diphenylindole 4 , and 2‐phenylbenzimidazole 7 , respectively.  相似文献   

17.
Methyl‐3‐(2‐chloroquinolin‐3‐yl)acrylates 5a‐i on reaction with methyl amine in acetonitrile yielded methyl‐3‐[2‐(methylamino)quinolin‐3‐yl]acrylates 6a‐i . When, these were followed by the reaction with the Vilsmeier reagent, they afforded methyl benzo[b][1,8]naphthyridin‐3‐carboxylate 7a‐i in good yields.  相似文献   

18.
A series of 2‐alkyl/aryl‐4H‐benzo[1,4]thiazine‐3‐ones have been synthesized by microwave irradiation of ethyl‐2‐bromo‐2‐alkyl/aryl acetate and 2‐amino thiophenol in the presence of 1,8‐diazabicyclo‐[5.4.0] undec‐7‐ene and N‐methylpiperidine. All compounds were characterized by 1H NMR, 13C NMR and elemental analyses, and by X‐ray crystallography in the case of 2‐methyl‐4H‐benzo[1,4]thiazin‐3‐one.  相似文献   

19.
Two competitive processes ‐ 1,3‐dipolar cycloaddition and nucleophilic addition ‐ in the reaction of 4,4,5,5‐tetramethyl‐4,5‐dihydro‐1H‐imidazole 3‐oxides with asymmetrically substituted alkynes were shown to occur. The influence of solvents and the nature of substituents in the reagent and substrate molecules on the rate ratio of these competitive processes were studied.  相似文献   

20.
The Schiff bases 3a‐h obtained from 4‐amino‐1,2,4‐triazol‐3‐ones 1a‐h when subjected to Japp‐Klingemann reaction yielded the corresponding 3‐{2‐[(2‐aryl‐5‐methyl‐3H‐[1,2,4]‐triazol‐3‐one‐4‐yl)]‐iminophenyl}‐pentane‐2,4‐diones 4a‐h . These diones on cyclisation with N2H4 yielded the title compounds 5a‐h . The energetics of the Keto‐enol tautomers of the diones was calculated by semiemperical calculations using AM1 and PM3 methods. All these compounds were screened for their antimicrobial activity against few microbes and most of them exhibited fungal inhibition more than the reference drugs used.  相似文献   

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