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1.
By reaction of 2-[(1RS, 2RS)-2-hydroxy-1-methyl-propyl]-2-phenyl-1,3-dithiane (1 a) withcis-2-butene oxide, subsequent reduction and acetalizationc-4,t-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 a) andt-4,c-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 b) were synthesized as model compounds. For the same purpose by aldol reaction of cyclohexanone and reduction (1RS, 2SR)-2[(RS)-hydroxy-(4-methoxyphenyl)methyl]cyclohexanol (7 a), (1RS, 2RS)-2[(SR)-hydroxy-(4-methoxyphenyl)methyl]cyclohexanol (8 a), and (1RS, 2RS)-2[(RS)-hydroxy-(4-nitrophenyl)methyl]cyclohexanol (8 b) and by acetalization (2 , 4 , 4 a, 8 a)-2,4-bis(4-methoxyphenyl)hexahydro-4H-1,3-benzodioxin (9 a) and (2 , 4 , 4 a, 8 a)-2,4-bis(4-nitrophenyl)hexahydro-4H-1,3-benzodioxin (10 b) were obtained. FromPrins reactions, starting with 2-butene3 a,c-4,c-5-dimethyl-r-2,c-6-diphenyl-1,3-dioxane (3 c),r-4,t-5-dimethyl-c-6-phenyl-1,3,2-dioxathiane-2,2-dioxide (4), and (2Z, 4E)-1,5-diphenyl-4-methyl-2,4-pentadien-1-on (5), and starting with cyclohexene (E)-3-(4-methoxybenzylidene)cyclohexenyl-4-methoxyphenyl ketone (11) have been isolated in low yields.
4. Mitt.:Griengl, H., Nowak, P., Mh. Chem.109, 11 (1978).  相似文献   

2.
The reaction of1,1-dimethyl-3-oxobutylisothiocyanate1 with methyl anthranilate takes place via the 2-(2-thioxopyrimidine-1)-benzoic methylester2 a, which is rearranged to the methyl thioxopyridineanthranilate3 a. 3 a is alkylated by methyl anthranilate to the corresponding methylthio-product4 a, which reacts with anthranilic acid via5a to the benzo [1,6]naphthyridino[5,6-b]-chinazoline6. 6 can also be synthesized by condensation of 2-methylthiopyridines9 a, b with anthranilic acid and 4-dimethylaminpyridine-2-thione8a with methyl anthranilate resp.
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3.
The reactivity of 3-amino-2,4-dicyano-methyl-(1d) and-ethyl-crotonate (1e), resp., a new type of codimer from malononitrile and cyanoacetate, was investigated. Condensation reactions with aromatic aldehydes (2a-g), with heterocyclic aldehydes (2j-l), nitrosobenzenes (3a-c) ando-hydroxybenz-and-naphtaldehydes (4a-f), resp., are described, the differences in reactivity, compared with dimer malononitrile and dimeric forms of cyanoacetate (1a-c) are negligible. Condensation compounds of1a with cycloalkanones (5a-c) are able to cyclise with sulfur to cycloalkanonothieno-pyridines (6a-b), while the cycloalkano-derivatives of1d gave no ring closure.
Herrn Prof. Dr.O. E. Polansky zum 60. Geburtstag in Erinnerung an gemeinsame Tätigkeiten auf dem Gebiet der Nitrilchemie gewidmet.  相似文献   

4.
Condensation of benzils with 3-amino-2,4-dicyano-crotonic-ester (2a, b) and dimer cyanoacetate (2c, d) resp. leads to 4,5-diaryl-3-pyrroline-2-ylidenecyanoacetates3a-m. It can be shown by13C-spectroscopy that in the monosubstituted benzil1c the carbonyl function adjacent to the unsubstituted phenyl reacts with the methylene group of2a orb. With aqueous alkaline the pyrrolines3 rearrange to pyrrolidinones4a-i.1H-NMR-CIDNP experiments support the assumption of a partial radical character of this rearrangement.
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5.
Ether cleavage of the two isomeric diamino-methoxy-pyridine-carbonitriles1 and2 leads to the isomeric 4,6-diamino-2(1H)-pyridone-3-carbonitrile (3 a) and 2,4-diamino-6(1H)-pyridone-3-carbonitrile (4 a), resp. Dependent on the reaction conditions in glacial acetic acid containing hydrogen bromide or potassium iodide the halogenated pyridones (3 b, 4 b–c) can be obtained.pK s -values and UV-spectra of the pyridones are discussed.3 a and4 a can be used as azo-coupling components, yielding the azo-dyes5 and6. Similarly 4-amino-6-hydroxy-2(1H)-pyridones (7 a–b) are coupled with several aryl- and heteroaryl-diazoniumsalts to form the azo-dyes8 a–g.
Herrn emer. o. Univ.-Prof. Dr.Otto Hromatka zum 80. Geburtstag gewidemet.  相似文献   

6.
3-Methyl-5-phenyl-2-cyclohexenone (6 a), 3,5-dimethylcyclohexenone6 b, 3-methylcyclohexenone6 c and 2-cyclohexenone (6 d) resp. react with guanidine in toluene and methanol resp. to give the substituted 2,4-diazabicyclo[3.3.1]nonane-3-imines7 a-d. The condensation of isophorone6 e with guanidine (to form7 e) could not be accomplished. The structures of the compounds7 a-d are deduced from their IR- and NMR-spectra; the mechanism and the steric course of the reaction are discussed. Salts of7 a-d were also prepared.7 a andb showed no significant herbicidal and only small fungicidal and insecticidal activities in screening tests.
Vergleiche auch die 58. und 59. Mitt., Mh. Chem., im Druck.  相似文献   

7.
The reaction of tetrahydroxy-benzoquinone with malononitrile is reinvestigated. Spectroscopic and chemical methods establish the structure of the product formed as 2,6-diamino-4,8-dihydro-4,8-dioxobenzo(1,2-b:4,5-b)difuran (2a). Alkylethers of tetrahydroxy-benzoquinone react with malononitrile to give tetraalkoxytricyanovinyl-phenols (5).
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8.
The synthesis and reactions of methyl 2-[3-(trifluoromethyl)phenyl]-4H-furo[3,2-b]pyrrole-5-carboxylate (1a) are described. Upon reaction with methyl iodide, benzyl chloride, or acetic anhydride, this compound gave N-substituted products 1b-d. By hydrolysis of compounds 1a-c, the corresponding acids 2a-c were formed, or by reaction with hydrazine-hydrate, the corresponding carbohydrazides 3a-c were formed. By heating 2-[3-(trifluoromethyl)phenly]-4H-furo[3,2-b]pyrrole-5-carboxylic acid (2a) in acetic anhydride, 4-acetyl-2-[3-(trifluoromethyl)phenyl]furo[3,2-b]pyrrole (4) was formed. By hydrolysis of 4, 2-[3-(trifluoromethyl)phenyl]-4H-furo[3,2-b]pyrrole (5a) was formed, and reactions with methyl iodide or benzyl chloride gave N-substituted products 5b-c. The reaction of 4 with dimethyl butynedioate gave substituted benzo[b]furan 6. Compound 3a reacted with triethyl orthoesters giving 7a-c, which afforded with phosphorus (V) sulphide the corresponding thiones 8a-c. The thiones 8a-c reacted with hydrazine hydrate to form hydrazine derivatives 9a-c. The reaction of triethyl orthoformiate with compounds 9a-c led to furo[2′,3′: 4,5]pyrrolo[1,2-d][1,2,4]triazolo[3,4-f][1,2,4]triazines 10a-c. Hydrazones 11a-c were formed from 3a-c and 5-[3-(trifluoromethyl)phenyl]furan-2-carboxaldehyde. The effect of microwave irradiation on some condensation reactions was compared with “classical” conditions. The results showed that microwave irradiation shortens the reaction time while affording comparable yields.  相似文献   

9.
The aminonitriles3a–f react with guanidine inDMF to yield the 5,5-resp. 5-subtituted imidazolidine-2,4-diimines2a–d resp.2f, whereas2e could not be isolated. 7,14-diazadispiro[5.1.5.2]-pentadecan-15-on (7)1, 4-imino-1,3-diazaspiro[4.5]decan-2-one (8a)1 and the 2,4-diaminotriazine (9)1 were isolated as byproducts.1-Aminocyclohexancarbonitrile (3a) reacts with urea to the 4-imino-1,3-diazaspiro[4.5]decan-2-one (8a)1;8a can be prepared from (1-cyancyclohexyl)urea (11a) as well. The structures of the new compounds are proved by NMR-, IR- and mass spectra and the mechanism of the reaction is discussed.
Herrn Prof. Dr.G. Zigeuner zum 60. Geburtstag gewidmet.  相似文献   

10.
2 can be pyrrolized to yield3 a, which in turn may be hydrolyzed with HCl to3 b. Acetylation of3 a followed by a reaction with trifluoroacetic acid (TFA) gives3 e. Elimination of ethanol from3 a or of water from3 e is not possible. Treatment of1 a with pyridine/acetic anhydride andTFA or with acetic acid/acetic anhydride affords4 a and4 b, resp. Reaction of4 b in benzene/p-toluenesulfonic acid for 2 hours yields both ethers5I and5II, whereas after 6 hours 4-acetyl-4H-1,4-benzoxazine (6) is obtained. The structures of all products are established by chemical and spectroscopic methods.
Teile aus der DissertationW. Kropp, Universität Wien, 1977.  相似文献   

11.
Addition of amines to dibenzylidene sulfamide1 a yields the correspondingSchiff bases3 a, b and monobenzylidene sulfamide2. Reaction of several dibenzylidene sulfamides1 with various lithium-amides gives N1-substituted N2-benzylsulfamoyl-benzamidines7 a-k via an intramolecular hydride transfer reaction, whereas by treatment of1 a with sodium amide 2-benzyl-3,5-diphenyl-3,4-dihydro-2H-1,2,4,6-thiatriazine-1,1-dioxide8 is obtained, which on hydrolysis yields9 and11. Alkylation products are described, the isomeric products12a/13a and12b/13b are isolated, their structures are confirmed by synthesis, IR and NMR-spectra.
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12.
The methylindoles3 a–3 c react with ethyl orthoformate1 a or ethyl trithioorthoformate1 b byLewis-acid catalysis regioselectively to bisindolylmethyl-cations4 and to trisindolylmethanes5. In this type of reactions the orthoester electrophiles represent potent acylation equivalents with nearly equal reactivity.
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13.
Reaction of 7,14-cyclo-7,8-dihydrocodeinone (1) with diazomethane gives a mixture, from which nine compounds were isolated; the structures of seven (4a–c, 5, 6, 7a and8) could be determined. Insertion of a methylene group between carbon atoms 5 and6 of1 leads with opening of the ether bridge to7a as the major product.
Herrn Univ.-Prof. Dr.G. Zigeuner mit den besten Wünschen zum 60. Geburtstag gewidmet.  相似文献   

14.
Reaction of malononitrile dimer (1) and the codimer from cyanoacetate and malononitrile (2) with dimethylformamide-dimethylacetal (DMFDMA) leads to the monocondensation products5 a, b. The isomeric codimer3, however, gives the amidine6. Ring closure reactions of5 a with ammonia and primary aliphatic and aromatic amines yield 2,4-diamino-3,5-pyridinedicarbonitriles7 a–j, in the case of5 b the 4-amino-1,2-dihydro-2-oxo-3,5-pyridinedicarbonitriles8 b–i. Reactions of1 and2 with an excess ofDMFDMA give the biscondensation products11 a, 11 b.11 b reacts with primary aromatic amines to give the pyridine derivatives13. The structure of13 was confirmed by hydrolytical cleavage to the dicyano-aminopyridone14. Treatment of13 with concentrated hydrochloric acid leads to the pyridopyrimidine derivatives15.
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15.
Reaction of the betaine1 and pyridinebetaine8 with trifluoroacetic anhydride yields the salts4a or9a and the yellow ylide5, respectively. In an analogous manner8 reacts with trichloroacetic anhydride to give11a. In a competitive reaction the trifluoroacetates6 and10 are also formed. Pyridinebetaine hydrochloride reacts similarily with trichloroacetic anhydride.
12. Mitt.:Wittmann H., Sobhi D., Petio F. A., Z. Naturf.31 b, 850 (1976).  相似文献   

16.
Phenylmalonyl heterocyclic compounds such as the quinolones1a–c or3, benzoquinolizinones6a, b and the phenalenones8a, b can be converted to benzofuranes (2a–c, 7a, b and9a, b) by cyclodehydrogenation with Pd/C in boiling diphenyl ether. 2-Phenylchinchonic acid (10) reacts under the same conditions to the dimeric benzofuroquinoline12: the decarboxylated quinoline11 however gives the monomer13.
Herrn Prof. Dr.G. Zigeuner zur Vollendung seines 60. Lebensjahres gewidmet.  相似文献   

17.
Zusammenfassung Dihydronorthevinon (2b) wurde aus Dihydrothevinon (2a) mit Azodicarbonsäurediethylester (DEAD) hergestellt und zu einigen neuen N-substituierten Dihydronorthevinon-Derivaten (2c–2g) umgesetzt. Es wurdenGrignard-Reaktionen dieser Verbindungen mit Methylmagnesiumiodid bzw.tert-Butylmagnesiumchlorid durchgeführt. O-Demethylierungen von3a–3j ergaben die entsprechenden N-substituierten Buprenorphin- bzw. Diprenorphin-Analoga4a–4j.
Preparation of 6,14-ethenomorphinan derivatives
Summary Dihydronorthevinone (2b) was prepared from dihydrothevinone (2a) with diethyl azodicarboxylate (DEAD) and transformed into a number of new N-substituted dihydronorthevinone derivatives (2c–2g).Grignard reactions of the new compounds with methylmagnesium iodide andtert-butyl-magnesium chloride were studied. O-Demethylation of3a–3j resulted in the corresponding N-substituted buprenorphine and diprenorphine analogs4a–4j.
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18.
Summary Reactions ofcis-2-(4-methylbenzoyl)-cyclopropane- (1) and-cyclobutanecarboxylic acids (2), the stereoisomeric cyclohexyl homologues (3 and4), and di-endo-3-(4-methylbenzoyl)-bi-cyclo-[2.2.1]heptane-2-carboxylic acid (5) with hydrazines yield the cycloalkane-condensed (3(2H)-pyridazinones6–9 and the norbornane di-endo-fused derivatives10. With hydroxylamine, compounds1 and3–5 were transformed to the cycloalkane- and norbornane-condensed 1,2-oxazin-6-ones11–14. Transformation of3–5 led to thetrans-hexahydroanthrone17a and its methylene-bridged analogue24. From the stereoisomeric hexahydro-1(3H)-isobenzofuranones20 and21, the partly saturated anthrones were also prepared; the products (16b and17b) contain the methyl substituent in position 6. On reduction,16b yield the 2-methyloctahydroanthracene22. The structures of the compounds were proved by1H and13C NMR spectroscopy, making use of NOE, DEPT, and CH-COSY techniques.
Synthese und räumliche Struktur von mit drei- bis sechsgliedrigen gesättigten Homocyclen oder Norbornan kondensierten 3(2H)-Pyridazinonen und 1,2-Oxazin-6-onen
Zusammenfassung Die Reaktion voncis-2-(4-methylbenzoyl)-cyclopropan-(1) und-cyclobutancarbonsäuren (2), der stereoisomeren cyclohexyl-Homologen (3 und4) und von di-endo-3-(4-methylbenzoyl)-bicyclo[2.2.1]heptan-2-carbonsäure (5) mit Hydrazinen ergibt die cycloalkankondensierten 3(2H)-Pyridazinone6–9 und das methylenüberbrückte di-endo-Derivat10. Die Verbindungen1 und3–5 wurden mit Hydroxylamin zu den cycloalkan- und norbornankondensierten 1,2-Oxazin-6-onen11–14 umgesetzt.3–6 reagierten zumtrans-Hexahydroanthron17a und seinem methylenüberbrückten Analogen24. Die teilweise gesättigten Anthrone wurden auch aus den stereoisomeren Hexahydro-1(3H)-isobenzofuranonen20 und21 hergestellt (16b und17b), wobei der Methylsubstituent jedoch in Position 6 lokalisiert ist. Reduktion von16b ergab das 2-Methyloctahydroanthracen22. Die Strukturen der Verbindungen wurden durch NMR-Spektroskopie abgesichert (1H,13C, DEPT, CH-COSY, NOE).
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19.
Zusammenfassung Die Bedingungen für die Kondensation von Benzil mit monomerem und dimerem Malonsäurenitril werden überprüft und für das 2-Benzoyl-2-phenyl-äthylen-1,1-dicarbonitril (2a) sowie das 2-Amino-4-benzoyl-4-phenyl-1,3-butadien-1,1,3-tricarbonitril (1a) die Strukturen sichergestellt. Unter dem Einfluß von wäßrigen Alkalien erleidet2a eine 1,2-Arylverschiebung und durch Cyclisierung entsteht das 2,5-Dioxo-4,4-diphenyl-pyrrolidin-3-carbonitril (7a).
Syntheses with nitriles, XXIII.: Anionotropic 1,2-Shift of aryl groups in benzil-malononitrile condensation products
The condensation conditions of benzil with monomeric and dimeric malononitrile have been reinvestigated and the structures of 2-benzoyl-2-phenyl-ethylene-1.1-dicarbonitrile (2a) and 2-amino-4-benzoyl-4-phenyl-1.3-butadiene-1.1.3-tricarbonitrile (1a) elucidated. With aqueous alkali2 undergoes 1.2-arylmigration and cyclization yielding 2.5 dioxo-4.4-diphenyl-pyrrolidine-3-carbonitrile (7a).
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20.
TheN-arylthioformimidates4 a-e, which may be obtained byS-alkylation of the thioformanilides3 a-e, react with chloroacetylchloride/triethylamine to yield the (3R,4S/3S,4R)-1-aryl-3-chloro-4-methylthio-2-azetidinones5 a-e and the formanilides6 a-e. Dehalogenation of5 b-e with tri-n-butyltinhydride yield the title compounds7 b-e. Hydrogenolysis of7 b and7 c yields7 f and7 g.
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