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1.
3-Amino-2-carboxymethylquinazolin-4(3H)-one was obtained by hydrazinolysis of 2-carbethoxymethyl-4H-3,1-benzoxazin-4-one. Its transformations into 2-hydroxypyrazolo[5,1-b]quinazolin-9(1H)-oneand3-amino-2-hydrazido-(orbenzylamido)carbonylmethylquinazoline-4(3H)-ones were studied.For Communication 1, see [1].Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 8, pp. 1128–1130, August, 1991.  相似文献   

2.
3-(2-Benzimidazolyl)-4-hydroxy-2-quinolone was unexpectedly obtained as the principal reaction product on fusion of 2-carbethoxymethyl-4H-3,1-benzoxazin-4-one with o-phenylenediamine. A possible mechanism of its formation is presented.For Communication 2 see [1].Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 2, pp. 239–241, February, 1992.  相似文献   

3.
The reaction of amino-N(4),N(4)-dimethylaminornethylenehydrazones 1 of some aliphatic carbonyl compounds with ethyl ethoxymethylenecyanoacetate 2 gave directly symmetrical gem-bis(3-dimethylamino-1, 2, 4-triazol-1-yl)alkanes 4 and (3-dimethylamino-1, 2, 4-triazol-1-yl)alkenes 5 at room temperature, with the former being major product. On the other hand, the reaction of amino- N (4)-methylaminomethylenehydrazone homologue 1 of aliphatic ketone with 2 gave ethyl 2-alkyl-5-methylamino[1, 2, 4]triazolo[1, 5-c]pyrimidine-8-carboxylate 7 as the only product with elimination of alkane.  相似文献   

4.
Quinazoline Carboxylic Acids. An Easy Route to (4-Oxo-3,4-dihydroquinazolin-3-yl)-alkanoic Acids, (4-Oxo-3,4-dihydro-1,2,3-benzotriazin-3-yl)-alkanoic Acids and their Esters A new route was found for the synthesis of (4-Oxo-3,4-dihydroquinazolin-3-yl)-alkanoic acids ( 8 ) and (4-Oxo-3,4-dihydro-1,2,3-benzotriazin-3-yl)-alkanoic acids ( 6 ) by cyclization of the N-(2-aminobenzoyl)amino acids 5 with HCOOH or HNO2. 2H-3,1-Benzoxazine-2,4(1H)-diones ( 1 ) reacted with glycine esters to 2 , which were cyclized by HNO2 to the esters 4 . Ester 4 was hydrolyzed to 6 (X = CH2). Diones 1 reacted with the most common amino acids (as the ammonium salt of tertiary amine) to amino-alkanoic acids 5 , which were cyclized with orthoformate to 7 or 8 depending on the reaction conditions.  相似文献   

5.
Contributions on the Thermal Behaviour of Sulfates. VIII. The Chemical Vapour Transport of FeSO4 with NH4Cl and Fe2(SO4)3 with Cl2 or NH4Cl. Experiments and Calculations Well shaped crystals of FeSO4 and Fe2(SO4)3 can be grown by CVT (T1? 650°C). We investigated the dependence of the transport rate on the concentration of the transport agent (Fe2(SO4)3/Cl2 and Fe2(SO4)3/NH4Cl) as well as on the temperature (FeSO4/NH4Cl and Fe2(SO4)3/Cl2). Using ΔfH(FeSO4) = ?220 kcal/ mol, Cp(T) = 30.1 + 9.9 · 10?3 ×T and ΔfH(Fe2(SO4)3) = ?615.4 kcal/mol a satisfying agreement between thermodynamical calculations and experimental results can be reached  相似文献   

6.
The reaction of 2-ethoxycarbonylmethyl-4H-3,1-benzoxazin-4-one with malononitrile in dry pyridine leads to 1-hydroxy-3,6-dioxo-4,6-dihydro-3H-pyrimido[1,2-a]quinoline-5-carbonitrile. Acetoacetic and cyanoacetic esters under analogous conditions form anilides of 4-hydroxy-2-oxo-1,2-dihydroquinoline-3-carboxylic acid while diethyl malonate gives N,N′-di-2-carboxyanilides of malonic acid. __________ Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 1, pp. 75–79, January, 2007.  相似文献   

7.
Ring transformations of 4H-pyrans into pyridines are reported. Treatment of 2-amino-4,6-diaryl-3,5-dicyano-4H-pyrans (I) with nitrosylsulfuric acid brings about their transformation into 3,5-dicyano-4,6-diaryl-2-pyridones (VI) which can also be obtained from α-benzoylcinnamonitriles (IX) and cyanoacetamide. Similarly, 2-amino-4,6-diaryl-5-carbethoxy-3-cyano-4H-pyrans (II) lead to 4,6-diaryl-5-carbethoxy-3-cyano-2-pyridones (VII). Treatment of both series of pyrans with sulfuric acid results in the formation of the corresponding 3,4-dihydro-2-pyridones (IV and V). Reaction of pyrans II with ammonium acetate in acetic acid yields 2-amino-4,6-diaryl-5-carbethoxy-3-cyanopyridines (XII). Pyrans I undergo an entirely different type of reaction upon treatment with this reagent leading to 2,4,6-triaryl-3,5-dicyano-1,4-dihydropyridines (XV).  相似文献   

8.
Quinazolinecarboxylic Acids. Synthesis of Alkyl [2-(Ethoxycarbonyl)-3,4-dihydro-4-oxoquinazolin-3-yl]-, [2-(Ethoxycarbonyl)quinazolin-4-yloxy]- and (5,6,7,8-Tetrahydro-2-phenylquinazolin-4-ylthio)alkanoates The [(2-aminobenzoyl)amino]alkanoic acids and their esters 1 showed a different reaction behaviour with diethyl oxalate. Compound 1 (n = 2,3) was converted into the quinazolinylalkanoates 3 . o-Aminohippurate yielded with ethyl (chloroformyl)formate a mixture of the amide 4 and the cyclized quinazolinone 7b . Ethyl 3,4-dihydro-4-oxoquinazoline-2-carboxylate ( 6 ) reacted with 2-bromoalkanoates, in the presence of NaH, to the [2-(ethoxycarbonyl)-3,4-dihydro-4-oxoquinazolin-3-y1]acetates 7 in the case of alkyl bromoacetate, and to the O-alkylated derivatives 8 with the ethyl 2-bromopropionate and -butyrate. 2-Aminobenzamide ( 5 ) gave with ethyl 3-(chloroformyl)-2-propenoate and methyl 3-(chloroformyl)propionate the amides 9 or 11 , respectively, and not the expected quinazolinones. The cyclized product 12 was obtained from 11 and ethyl bromoacetate. Tetrahydroquinazolin-4(3H)-thione 14 was synthesized by the reaction of 13 with NH3, and it was alkylated at the S-atom with bromoalkanoates to 15 . The hydrazide 16 was synthesized from 15b with hydrazine hydrate.  相似文献   

9.
The electronic structures of the tetrahedral molecule ions MnO 4 2– and CrO 4 3– have been investigated within an unrestricted CNDO-MO approximation [Theoret. Chim. Acta (Berl.)20, 317 (1971)]. Calculations assuming the unpaired electron occupies the 3a 1, 2e, and 4t2 molecular orbitals indicate that the 3a 1 and2e orbitals have similar orbital energies and that the 4t 2 orbital is at a higher energy. The experimentally indicated2e orbital for the unpaired electron is obtained with expanded O1– type atomic orbitals for oxygen and valence metal orbitals of the expanded 3d and plus one ion 4p types. The metal 4s orbitals must be held to the neutral atom type. The optimum valence orbitals above with a slightly contracted 4s type metal orbitals yield the minimum total energy and places the unpaired electron in the 3a 1 orbital. Since the contracted 4s metal orbital produces results that are not in agreement with experimental data, the method used apparently does not adequately take into account the increased electron-electron repulsions that contracted 4s orbitals produce.  相似文献   

10.
Novel copolymers of trisubstituted ethylene monomers, ring-disubstituted 2-phenyl-1,1-dicyanoethylenes, RC6H3CH=C(CN)2 (where R = 3-Br-4-CH3O, 5-Br-2-CH3O, 2-F-5-CH3, 2-F-6-CH3, 3-F-2-CH3, 3-F-4-CH3, 4-F-2-CH3, 4-F-3-CH3) and 4-fluorostyrene were prepared at equimolar monomer feed composition by solution copolymerization in the presence of a radical initiator (ABCN) at 70°C. The composition of the copolymers was calculated from nitrogen analysis, and the structures were analyzed by IR, 1H and 13C-NMR. The order of relative reactivity (1/r 1) for the monomers is 3-F-4-CH3(1.64) > 5-Br-2-CH3O (1.62) > 3-Br-4-CH3O (1.36) > 4-F-2-CH3(1.3) > 4-F-3-CH3(1.26) > 3-F-2-CH3(1.11) > 2-F-5-CH3 (0.98) > 2-F-6-CH3 (0.97). High Tg of the copolymers, in comparison with that of poly(4-fluorostyrene) indicates a substantial decrease in chain mobility of the copolymer due to the high dipolar character of the trisubstituted ethylene monomer unit. Decomposition of the copolymers in nitrogen occurred in two steps, first in the 290–400°C range with residue, which then decomposed in 400–800°C range.  相似文献   

11.
The bromination of 3-alkyl- and 3-ethoxycarbonyl-2-oxo-4-hydroxyquinolones by molecular bromine gave 3-bromo-3-R-2,4-dioxoquinolones. Under analogues conditions, 1-R-2,4-dioxo-3H-quinolone-3-carboxylic acids form 1-R-3-bromo-2-oxo-4-hydroxyquinolones. The results of the study of the antimicrobial activity of the compounds synthesized are presented.For Communication 25, cf. [1].Ukrainian Pharmaceutical Academy, Khar'kov, 310002. Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 2, pp. 204–207, February, 1995. Original article submitted November 8, 1994.  相似文献   

12.
The behavior of 2-chloro-4-hydroxy- and 4-chloro-2-oxoquinoline-3-carboxylic acids under acid catalyzed esterification conditions with methanol has been studied. A method is proposed for obtaining 2-chloro-4-hydroxyquinoline-3-carboxylic acid ethyl ester. __________ Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 8, pp. 1195–1197, August, 2005.  相似文献   

13.
Die erstmals dargestellten isotypen Verbindungen Ba4SiAs4, Ba4GeAs4, Sr4SiAs4 und Sr4GeAs4 kristallisieren kubisch, Raumgruppe P4 3n, mit 8 Formeleinheiten in der Elementarzelle: In den Strukturen liegen isolierte, d.h. nur von Ba-Ionen umgebene SiAs - bzw. GeAs -Tetraeder vor. Die Verbindungen sind die bisher eindrucksvollsten Beispiele für Zintlphasen mit komplexen Anionen. Zintl Phases with Isolated SiAs4 or GeAs4 Anions: Preparation and Structure of Ba4SiAs4, Ba4GeAs4, Sr4SiAs4, and Sr4GeAs4 The new compounds Ba4SiAs4, Ba4GeAs4, Sr4SiAs4, and Sr4GeAs4 have been prepared and their structures determined. They crystallize in the cubic system, P4 3n, with axes: data see “Inhaltsübersicht”. There are isolated SiAs or GeAs tetrahedra in the structures. The compounds can be interpreted as Zintl phases with complex anions.  相似文献   

14.
Cations with Xenon-Carbon Bonds. 4 Salts with Monosubstituted Phenyl Xenon Cation: Preparation, Stability and Reactivity . Nucleophilic fluorine aryl substitution reactions with monosubstituted phenylboranes (X? C6H4)3B and fluorophenylboranes (X? C6H4)nBF3?n (n = 1 and 2; X = m-F, p-F, m-CF3 and p-CF3) on XeF2 lead to the formation of [X? C6H4Xe]+ salts with arylfluoroborate anions [(X? C6H4)nBF4?n]? (n = 2, 1 and 0). Their thermal behaviour, their spectroscopic properties and first investigations concerning their reactivity are reported.  相似文献   

15.
Summary Addition of tetracyanoethylene to the 1,2,3,4-tetrahydro-isoquinoline-1,3-diones1 a–d yields 4-(dicyanomethylene)-1,2,3,4-tetrahydro-isoquinoline-1,3-diones3 or 4-(2-amino-1,1,3-tricyano-3-propylidene)-1,2,3,4-tetrahydro-1,3-diones4 depending on the substituent in position 2. Spectra of both types of derivatives are discussed.
  相似文献   

16.
On Chalcogenolates. 111. Studies on Perthiocyanic Acid. 4. Crystal and Molecular Structure of Dimethyl Perthiocyanate (CH3)2C2N2S3 crystallizes with Z = 4 in the monoclinic space group P21/c with cell dimensions a = 7.661(4) Å, b = 11.675(5) Å, c = 9.549(5) Å, β = 116.7(3)·. The crystal and molecular structure has been determined from single X-ray data at 20°C and refined to a conventional R of 0.062. The structure consists of isolated 3,5-bis(methylmercapto)-1,2,4-thiadiazole molecules. The 1,2,4-thiadiazole ring is plane and stabilized by mesomerism.  相似文献   

17.
The reaction of 4-alkyl-4-hydroxy-2-alkynenitriles with hydrogen halides (HCl and HI) in dioxane is accompanied by intramolecular cyclization with formation of 5,5-dialkyl-4-halo-2-imino-2,5-dihydrofuran hydrohalides. Treatment of the latter with K2CO3 in ethanol yields 5,5-dialkyl-4-halo-2-imino-2,5-dihydrofurans.  相似文献   

18.
3-(2-, 3- and 4-Pyridyl)-2-methoxythiophenes have been prepared in good yields through the Pd(0)-cat-alyzed coupling of the three isomeric bromopyridines with 3-trimethylstannyl-2-methoxythiophene. This compound was prepared through halogen-metal exchange of 3-bromo-2-methoxythiophene followed by stannylation. 3-Bromo-2-methoxythiophene was prepared by dibromination and α-debromination of 2-methoxythiophen. Most attempts to demethylate 2-methoxy-3-pyridylthiophenes using a large variety of reagents failed, probably due to the instability and high reactivity of the desired 3-pyridyl-2-hydroxythiophene systems. Only 2-methoxy-3-(3-pyridyl)thiophene reacted with boron tribromide to give 3-(3-pyridyl)-3-thiolene-2-one, which only was stable in ether solution at ?20°. The attempted demethylation of 2-methoxy-3-(2-pyridyl)thiophene with trimethylsilane chloride/sodium iodide in refluxing acetonitrile led to a dimer. Demethylation of the 2-methoxy-3-pyridylthiophenes with dibenzyl diselenide and sodium borohydride gave 3-pyridylthiophan-2-ones. A number of other routes to prepare 3-pyridyl-2-hydroxythiophenes were also explored, but none of them gave the desired compounds. On the other hand, the 4-(2-, 3-, and 4-pyridyl)-2-hydroxythiophene systems could easily be prepared by hydrogen peroxide oxidation of the corresponding 4-pyridyl-2-thiopheneboronic esters, which were obtained from 2-bromo-4-pyridylthiophenes by halogen-metal exchange followed by reaction with ethyl borate. The 2-bromo-4-pyridylthiophenes were prepared by dibromination of the known 3-pyridylthiophenes to the 2,5-dibromo derivatives, and removal of the 2-bromine by halogen-metal exchange at ?100°, followed by hydrolysis. The 1H nmr and ir spectroscopic investigations show that these quite stable 2-hydroxythiophene systems exist exclusively in the 4-pyridyl-3-thiolen-2-one forms.  相似文献   

19.
Alkaline hydrolysis of the ethyl ester of 4-(cyanoethoxycarbonylmethyl)-2-oxo-1,2-dihydroquinoline-3-carboxylic acid is accompanied by decarboxylation with loss of two molecules of CO2 and leads to 4-methyl-2-oxo-1,2-dihydroquinoline-3-carboxylic acid. __________ Translated from Khimiya Geterotsiklicheskikh Soedinenii, No. 6, pp. 887–893, June, 2006.  相似文献   

20.
The rearrangement of 1-alkyl- and 1-aryldihydro-6-methyl-2(1H)-pyrimidinethiones (1 a) or-ones (1 b) and of methylene compounds (2a, 2b) resp., to 4-alkylamino- and 4-arylaminodihydro-2(1H)-pyridinethiones (4 a) or-ones (4 b) takes place via the corresponding 3-alkylamino- and 3-aryl-amino-3-butenylisothiocyanates (3 a) or-isocyanates (3 b). Dialkylamino-dihydro-2(1H)-pyridinethiones (10) are formed by heating dihydro-6-methyl-2(1H)-pyrimidinethiones (6 a) and 3,4-dihydro-6-methyl-1,3-thiazin-2-thiones (6 b) with dialkylformamides and by the reaction of secondary amines with tetrahydro-6-hydroxy-6-methyl-1,3-thiazin-2-thiones (5 a), with N,N-dialkyl-N-(3-oxobutyl)-thioureas (7) and 3-oxobutyl isothiocyanates (8). A general method for the preparation of10 is the reaction of dialkylammoniumrhodanides12, N,N-dialkylthioureas13 and dialkylammonium chlorides and KCNS, resp., with 3-alken-2-ones14 and 4-hydroxy-2-alkanones15, resp. Methyl ketones such as acetone, which readily undergo the aldol condensation, behave analogously. The reactions described take place via the intermediate aminoalkenyl isothiocyanates (9).  相似文献   

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