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1.
Summary Sodium 2-aminothiophenoxide (1) reacts with ethyl 2-bromoalkanoates (2) under direct cyclization to form 2-alkyl-2H-1,4-benzothiazin-3(4H)-ones (3). Reaction of the sodium salt of 2-mercaptobenzimidazole (4) with2 or 2-bromoalkanoic acids (5) affords only S-alkylated products (6 or7, respectively). The cyclization products — 2-alkylbenzo[d]imidazolo[2,1-b]thiazolidin-3-ones (8) — can be obtained only from the corresponding 2-(2-benzimidazolylthio)alkanoic acids (7) by the action of acetic anhydride. Both compounds3 and8 exhibit only moderate antimicrobial activity against some gram-positive bacteria.
Synthese und antimikrobielle Wirkung von einigen 2-Alkyl-2H-1,4-benzothiazin-3(4H)-onen und 2-Alkylbenzo[d]imidazolo[2,1-b]thiazolidin-3-onen
Zusammenfassung Bei der Reaktion von Natrium-2-aminothiophenolat mit 2-Bromoalkansäure-ethylestern (2) entstehen als Cyclisierungsprodukte 2-Alkyl-2H-1,4-benzothiazin-3(4H)-one (3). Die Umsetzung von Natriumbenzimidazol-2-thiolat mit2 oder mit 2-Bromoalkansäuren (5) liefert nur S-Alkylierungsprodukte (6 oder7). Die Cyclisierungsprodukte — 2-Alkylbenzo[d]imidazolo[2,1-b]thiazolidin-3-one (8) — sind nur durch Umsetzung von entsprechenden 2-(2-Benzimidazolylthio)-alkansäuren (7) mit Acetanhydrid erhältlich. Die Verbindungen3 und8 weisen nur mäßige antimikrobielle Wirkung gegen einige gram-positive Bakterien aus.
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2.
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   

3.
Summary 4-Dimethylamino-5,6-dihydro-2H-thiopyran-2-thiones (1) were alkylated to N,N-dimethyl-6-methylthio-2H-thiopyran-4(3H)-iminiumiodides (2). Aminolysis of the latter with ammonia led to 6-dimethylamino-2H-thiopyran-4(3H)-iminiumiodides (3) which were hydrolyzed to 3-amino-N,N-dimethyl-2,4-pentadienthioamides (4). Ring closure with sulfur gave 3-aminothiophene-2-thioamides (5). The configurations of the pentadienthioamides (4) have been investigated by NOE experiments. The structures of the thiophene-2-thioamides (5) were established by means of two-dimensional NMR techniques.
Synthese von 3-Aminothiophen-2-thiocarboxamiden
Zusammenfassung 4-Dimethylamino-5,6-dihydro-2H-thiopyran-2-thione (1) wurden zu N,N-Dimethyl-6-methylthio-2H-thiopyran-4(3H)-iminiumiodiden(2) alkyliert. Die Umsetzung mit Ammoniak führte zur Bildung von 6-Dimethylamino-2H-thiopyran-4(3H)-iminiumiodiden (3). Diese wurden zu 3-Amino-N,N-dimethyl-2,4-pentadienthioamiden (4) hydrolysiert. Beim Erhitzen mit Schwefel erfolgte Cyclisierung zu 3-Aminothiophen-2-thiocarboxamiden (5). Die Konfiguration der Pentadienthioamide (4) wurde mit NOE-Messungen untersucht, die der Thiophen-2-thiocarboxamide (5) mit Hilfe zweidimensionaler NMR-Methoden aufgeklärt.
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4.
李文玲  何侃侃  李瀛  侯自杰 《化学学报》2005,63(17):1607-1612
对四种天然二聚二苯乙烯类化合物Shegansu B (1), Gnetuhainin F (1a), Maackin A (2)以及Cassigarol E (3)的全合成进行了研究. 以3,5-二羟基苯甲酸(4)为起始原料, 经六步反应制得异丹叶大黄素(13)和白皮杉醇(14), 在HRP/H2O2酶催化氧化体系中, 1314分别进行自身的氧化偶联得到各自的二聚产物. 首次完成了1a, (±)-2和(±)-3的全合成, 并以较文献报道为高的氧化偶联产率合成了(±)-1.  相似文献   

5.
Abstract

Several cobalt(III) complexes incorporating 2,2′-diaminobiphenyl(dabp) and other 2(2N)- or 4N-type ligands were prepared and resolved by chemical and chromatographic methods: (1) [Co(en)2(dabp)]Cl22H2O, (2) [Co(l-pn)2(dabp)] (ClO4)34H2O, (3) [Co(l-chxn)2(dabp)](ClO4)33H2O, (4) α-[Co(trien)(dabp)](ClO4)3, (5) α-[Co(2S,9S-dimetrien)(dabp)] (ClO4)3 2H2O, (6) α-[Co(3S,8S-dimetrien)(dabp)] (ClO4)33H2O, (7 [Co(tren)(dabp)]Cl35H2O, (8) [Co(bpy)2(dabp)] Cl33H2O. The complexes (1), (4) and (8) gave one pair of enantiomers, Δ(Λ) and Λ(δ), and the complexes (2) and (3) gave only one Δ-isomer. The absolute configuration of the complexes (5) and (6) was found to be Λ, and that of (7) was not determined because of unsuccessful resolution. The three geometric isomers of the complex (2) were separated and their structures assigned.  相似文献   

6.
The tautomers, 4-hydroxy-5,6-dihydro-6,6-dimethyl-2(1H)-pyridinethione (1) and 6,6-dimethyl-2-thioxo-4-piperidone (2) resp., and 4-hydroxy-5,6-dihydro-6,6-dimethyl-2(1H)-pyridone (9) and 6,6-dimethyl-2,4-piperidinedione (10) resp. were synthesized by hydrolysis of 4-amino-5,6-dihydro-6,6-dimethyl-2(1H)-pyridinethiones (4, 5) and-ones (11, 12).1, 2 and9, 10 undergo an aminolysis in amines to the corresponding 4-aminodihydro-2(1H)-pyridinethiones4, 5 and-ones11, 12 resp.
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7.
Die bei der Einwirkung von Kohlensuboxid auf Benzoylaceton sowie auf 4-Hydroxy-5-acetyl-6-phenyl-pyron-(2) (2) und 4-Hydroxy-5-benzoyl-6-methyl-pyron-(2) (3) entstehenden Produkte werden als Pyrono-pyrone (4, 5 und6) erkannt.The reaction of carbon suboxide with benzoyl acetone (1) and 5-acetyl-4-hydroxy-6-phenyl-pyron-(2) (2) and 5-benzoyl-4-hydroxy-6-methyl-pyron-(2) (3) yields the pyrono-pyrones4, 5 and6.  相似文献   

8.
Zusammenfassung An der Methylgruppe substituierte Chinaldine (1) reagieren mit monosubstit. Malonsäure-bis-2,4,6-trichlorphenylestern (2a-c) bei 250° zu Derivaten des Hydroxy-benzo[c]chinolizinons (4bzw.5). Aus Chinaldin selbst entstehen unter diesen Bedingungen Pyrono-chinolizinone (3). Analog erhält man bei der Umsetzung von 1-Methylisochinolin (9) mit2 2-Hydroxy-benzo[a]chinolizin-4-one (11) und aus 6-Alkylphenanthridinen (13) Dibenzoderivate des Chinolizinons (14). 2-Chinolylessigsäureester (6) addiert sogar Kohlensuboxid (C3O2) unter Bildung von 4-Äthoxy-carbonyl-3-hydroxy-benzo[c]chinolizin-1-on (8 a).
2-Alkylquinolines (1) react with monosubstituted 2.4.6-trichlorophenyl malonates (2) at 250° to derivatives of hydroxy-benzo[c]quinolizinone (4 or5). The reaction of quinaldine itself with2 leads to pyrono-quinolizinones (3). The reaction of2 with 1-methylisoquinoline (9) yields 2-hydroxy-4H-benzo[a]quinolizin-4-ones11, and with 6-alkyl-phenanthridines (13) dibenzo[a, c]quinolizinones (14) are obtained. Carbon suboxide (C3O2) is added readily to ethyl 2-quinolyl acetate (6) yielding 4-ethoxy-carbonyl-3-hydroxy-1H-benzo[c]quinolizin-1-one (8 a).
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9.
《合成通讯》2013,43(19):2985-2990
ABSTRACT

3-Prop-2′-ynyloxybenzothiapyran-4-one derivatives (3a–d) were prepared from 3-hydroxy benzothiapyran-4-one (1) and prop-2-ynylic halides (2) in 70–90% yield. The ethers (3a–d) were then heated in refluxing chlorobenzene to give furo[3,2-b]benzothiapyran-9-one derivatives (4a–d) in 87–95% yields. 2-Chloro-2-methylbut-3-yne (2e) on reaction with 3-hydroxybenzothiapyran-4-one (1a) directly afforded 2-isopropyl furo[3,2-b]benzothiapyran-9-one (4e) in 70% yield.  相似文献   

10.
Ti(OPri)4 reacts with HOSi(OtBu)3 in anhydrous benzene in 1:1 and 1:2 molar ratios to afford alkoxy titanosiloxane precursors, [Ti(OPri)3{OSi(OtBu)3}] (A) and [Ti(OPri)2{OSi(OtBu)3}2] (B), respectively. Further reactions of (A) or (B) with glycols in 1:1 molar ratio afforded six complexes of the types [Ti(OPri)(O–G–O){OSi(OtBu)3}] (1A3A) and [Ti(O–G–O){OSi(OtBu)3}2] (1B3B), respectively [where G = (CH2)2 (1A, 1B); (CH2)3 (2A, 2B) and {CH2CH2CH(CH3)} (3A, 3B)]. Both (A) and (B) are liquids while all the other products are viscous liquids which get solidified on ageing. Cryoscopic molecular weight measurements of the fresh products indicate their monomeric nature. FAB mass studies of (A) and (B) also indicate monomeric nature. However, FAB mass spectra of the two representative solids (1A) and (2B) suggest dimeric behavior of the glycolato derivatives. (A) distills at 85 °C/5 mm while other products get decomposed even under reduced pressure. TG analyses of (A), (B), (1A), and (1B) suggest formation of titania–silica materials at 200 °C for (A) and (B) and 350 °C for (1A) and (1B). The products have been characterized by elemental analyses, FTIR and 1H, 13C & 29Si-NMR techniques. All these products are soluble in common organic solvents indicating a homogenous distribution of the components on the molecular scale. The Si/Ti ratio of the oxide may be controlled easily by the composition of the starting precursors. Hydrolysis of the glycol modified derivative, (1A) by the Sol–Gel technique affords the desired homogenous titania–silica material, TiO2·SiO2 in nano-size while, the precursor (A) yields a non-stiochiometric silica doped titania material. However, pyrolysis of (A) yields nano-sized crystallites of TiO2·SiO2. All these materials were characterized by FTIR, powder XRD patterns, SEM images, and EDX analyses.  相似文献   

11.
Tetrahydro-6-hydroxy-4,4,6-trimethyl-1,3-thiazine-2-thione (1 a) reacts with methyl-, ethyl- and n-butylamine to the corresponding 1-alkyl-6-alkylaminotetrahydro-2(1H)-pyrimidinethione12 but withi-propylamine to tetrahydro-6-isopropylamino-1,3-thiazine-2-thione (6 d). On treatment withDCC,6 d is rearranged to dihydro-4-isopropylamino-2(1H)-pyridinethione (8 d), and 6-amino-tetrahydro-1,3-thiazinethione (6 a) to dihydro-4,4,6-trimethyl-2(1H)-pyrimidinethione (10 a). The reaction of 6-aminothiazinethiones6 a, d and 6-(4-morpholinyl)-thiazinethione13 resp., with methylamine leads to 1-methyl-6-methylamino-pyridinethione12 b. 1-Alkyl-6-alkylamino-tetrahydro-2(1H)-pyrimidinethiones (12) react at reflux temperature to dihydro-1-alkylpyrimidinethiones10. With methylamine only 6-methylamino-3,4,4,6-tetramethyl-1,3-thiazine-2-thione (6 f) is formed from tetrahydro-6-hydroxy-tetramethyl-1,3-thiazine-2-thione (1 b).  相似文献   

12.
The reaction of N-(2-pyridyl)-carbaminates (3), 1-phenyl-3-(2-pyridyl)-urea (5 a) or alkyl and aryl substituted pyridopyrimidinediones (2) synthesized from 2-amino-pyridine with arylisocyanates (4 a, b) yields 3-aryl substituted pyrido-[1,2-a]-s-triazine-2,4-diones (1). 2-Aminopyridine and azamalonic derivatives (ethoxycarbonyl isocyanate, ethyl iminodicarboxylate) react to give the 3-unsubstituted triazine system (1 c). The isolation of monocyclic triazinediones obtained from the reaction of N-phenylbenzamidine (9) with aryl isocyanate (4 a) or ethoxycarbonyl isocyanate failed because of hydrolytic ring opening. The mechanism of the reaction of 3-substituted pyrido-pyrimidinediones (2) and phenyl isocyanate (4 a) is discussed.  相似文献   

13.
Zusammenfassung Es werden einstufige Synthesen desGlomerins (2) [1,2-Dimethyl-4(1H)-chinazolinon] und desArborins (3) [1-Methyl-2-benzyl-4(1H)-chinazolinon] bekanntgegeben.
Syntheses of heterocycles, CXXX: Glomerine and arborine
A one step synthesis ofglomerine (2) [1.2-dimethyl-4(1H)-quinazolinone] andarborine (3) [1-methyl-2-benzyl-4(1H)-quinazolinone] is described.
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14.
首次利用甾体皂甙元氧化降解废弃物(R)-4-甲基-δ-戊内酯合成了松叶蜂性信息素(2S,3S,7S)-3,7-二甲基-2-十五醇乙酸酯(2)和丙酸酯(3). 甾体皂甙元氧化降解废弃物(R)-4-甲基-δ-戊内酯首先被转化成为性质稳定易保存的(R)-5-溴-4-甲基戊酸甲酯(5), 化合物5经过偶联、还原、溴代、环氧加成开环和酰化反应给出目标分子. 本研究结果不仅为松叶蜂性信息素化合物23提供了一个简洁有效的合成方法, 同时也丰富了资源化学(即基于资源性化合物合理利用的有机合成化学)的内涵.  相似文献   

15.

1,2,3,4-tetrahydro-1-naphthylidene-malononitrile (1) reacts with carbethoxymethylene and carbmethoxymethylene- triphenylphosphoranes (2a, 2b) to give the new phospho-ranylidenecyclopentaylidene products (4a, 4b, and 5), respectively. The treatment of (1) with phosphorus ylide 2c afforded the new phosphonium ylide 6. Moreover, the application of reagent (2d) on (1) renders compound 7. On the other hand, when N-phenyliminotriphenylphosphorane (3) reacts with (1), the corresponding adduct (8) was obtained together with triphenylphosphine. Mechanisms accounting for the formation of new products are discussed, and probable structures of products are presented based on analytical and spectroscopic data.  相似文献   

16.
《合成通讯》2013,43(20):3175-3181
1, 3 - Disubstituted- 4 - (1′, 3′- dithiolane /dithiane - 2′- ylidene) - 2 -pyrazolin-5-one derivatives like (1ac), (2ac), (3ac) have been obtained by condensation of 2-pyrazolin-5-ones (1), (2) and (3) with carbon disulfide in presence of triethylamine followed by the reaction with 1,2-dibromoethane (4a), 1,3-dibromopropane (4b) and 1,3-dibromobutane (4c) respectively.  相似文献   

17.
Summary The syntheses of 3-chloro derivatives of 2-alkyl-pyrimido[1,6-a]benzimidazol-1(2H)-ones2a, b as well as of 4,4-dichloro and 4,4-dibromo derivatives of 2-alkylpyrimido[1,6-a]benzimidazole-1,3(2H,4H)-diones3 a, b and4 are reported. Methods for converting some of the chloro compounds to azido (5, 6), amino (8), morpholino (9 a,10,11), piperidino (9 b), cyano (12), and methoxy (13) derivatives of the adopted tricyclic system are also described.
Kondensierte Ringsysteme des Benzimidazols, 6. Mitt.: Organische Azide in der Heterocyclen-Synthese, 10. Mitt.: Synthese von substituierten Pyrimido[1,6-a]benzimidazolen als mögliche antimikrobielle Wirkstoffe
Zusammenfassung Die Synthese von 3-Chlor-2-alkyl-pyrimido[1,6-a]benzimidazol-1(2H)-onen (2 a, b) und von 4,4-Dichlor- und 4,4-dibrom-pyrimido[1,6-a]benzimidazol-1,3(2H,4H)-dionen (3 a, b, 4) wird beschrieben. Diese Verbindungen lassen sich zu den entsprechenden Azido- (5, 6), Amino- (8), Morpholino- (9 a, 10, 11), Piperidino- (9 b), Cyano- (12) und Methoxy- (13) Derivaten umwandeln.
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18.
Abstract

The reactions of 5-chloro-2-thiophenesulfonyl chloride are described. Treatment of the sulfonyl chloride with ammonia, hydrazine hydrate, sodium azide, indole and imidazole gave the sulfonamides (5), sulfonohydrazide (4), sulfonyl azide (3), 1-(5-chloro-2-thiophenesulfonyl)indole (27) and 1-(5-chloro-2-thiophenesulfonyl)-imidazole (26), respectively. The sulfonyl chloride was reacted further with 20 aryl-and cycloalkyl-amines to give the corresponding sulfonamides (6)-(25). Attempted chlorination of the sulfonyl chloride (2) with sulfuryl chloride or bromination of the sulfonyl azide (3) with pyridinium bromide perbromide failed. However, nitration of the sulfonyl chloride (2) with fuming nitric acid gave the 4-nitro-sulfonyl chloride (28), which with sodium azide afforded the 5-chloro-4-nitro-sulfonyl azide (29). The sulfonyl azides, (3) and (29), have been reacted with triphenylphosphine, triethylphosphite, norbornene and cyclohexene. The azides reacted further with indole and 1-methylindole to give the 2-sulfonyl-iminoindolines (34)-(36). The infra-red spectra and mass spectra of some of the substituted thiophenesulfonyl derivatives are discussed.  相似文献   

19.
Summary 2,3-Dihydro-2(R)-methyl-1,5-benzoxazepin-4(5H)-one [(R)-3] and its enantiomer (S)-3 have been synthesized via the optical resolution and subsequent chemical transformations of (±)-3-(2-nitrophenoxy)butyric acid (1). Compounds (R)-3 and (S)-3 were converted into optically active 1,5-benzoxazepines (R)-7–(R)-14 and (S)-15–(S)-32.
Oxazepine und Thiazepine, XXIV: Darstellung optisch aktiver 2,3-Dihydro-2-methyl-1,5-benzoxazepin-4(5H)-one
Zusammenfassung 2,3-Dihydro-2(R)-methyl-1,5-benzoxazepin-4(5H)-on [(R)-3] und sein Enantiomeres (S)-3 wurden durch Racemattrennung und weitere chemische Umsetzungen von (±)-3-(2-Nitrophenoxy)buttersäure (1) dargestellt. Die Verbindungen (R)-3 und (S)-3 wurden in die optisch aktiven 1,5-Benzoxazepine (R-7 bis (R)-14 und (S)-15 bis (S)-32 übergeführt.
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20.
Summary The ozonolysis of mono-unsaturated compounds containing the structural element =CH-CH2-R [R=COOH, COOCH3, CH(OCH3)2] was investigated. Reductive ozonolysis of (E)-3-hexene-1,6-dioic acid gives methyl 3,3-dimethoxypropanoate (2), whereas ozonolysis of dimethyl (E)-3-hexene-1,6-dioate (1a) and (Z)-1,1,6,6-tetramethoxy-3-hexene (1b) in a methanolic solution of HCl leads to a mixture of2, dimethyl malonate (3 a) and 1,1,3,3-tetramethoxypropane (3 b). The homologuos derivatives, dimethyl glutaconate (4 a) and 1,1,5,5-tetramethoxy-2-pentene (4 b), were ozonized to give mixtures of2, 3, dimethyl oxalate (5), methyl 2,2-dimethoxyacetate (6 a), and 1,1,2,2-tetramethoxyethane (6 b). The ratios of the various reaction products were determined by gas chromatography. In each case the formation of the bifunctional derivatives2 and6 a was favoured.
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