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1.
4-O-(2,6-diamino-2,3,4,6-tetradeoxy-3-C-methyl-β-L-arabino and lyxo-hexopyranosyl) and 4-O-(2-amino2,3,4,6-tetradeoxy-5-c-methyl-L-threo-hexopyranosyl-6-O-(3-amino-3-decxy-α-D-glucopyranosyl)-2-deoxystreptamine (6, 7 and 12) were synthesized from a kanamycin B derivative (1) by regiospecific methylation and stereospecific hydrogenation followed by removal of masking groups, converting a D-sugar moiety (4-O-glycoside portion) into L-sugar. The usual conformation of 6 and 7 were determined as boat and skew by 250 MHz PMR spectra respectively.  相似文献   

2.
trans- -Isopropenyl-4-methylene-spiro[2.x]alkanes (4a and 4b) react at 0°C with CSI to give as major products the trans bicyclic cycloazanondienones (12a-12b) and as the minor products bicyclodihydro-azepinones (11a and 11b), and the respective cis isomer of bicyclic cycloazanondienones (13a and 13b).  相似文献   

3.
Unprotected thymidine and uridine react with 4-nitrophenylsulfonyl ethene (3) in a base catalyzed Michael type addition to give O4-(4-nitrophenylsulfonylethyl)thymidine-(6) and -uridine (7), respectively. The 4-nitrophenylsulfonylethyl group is cleaved within 2.5 hours at 50–55°C by concentrated aqueous ammonia, via β-elimination.  相似文献   

4.
A series of cyclo (Δaminoacyl-L-Ala) (4) (Δ=α,β-dehydro) were prepared from cyclo(Gly-L-Ala) and corresponding aldehyde, and hydrogenated with Pd black in MeOH. Chiral inductions producing cyclo (L-aminoacyl-L-Ala) (5) from 4 were 96–99% in the case of L-Aba (2-aminobutanoic acid), L-Val, L-Leu, and L-App (2-amino-5-phenylpentanoic acid) as an L-aminoacyl moiety in 5. Pure L-Leu, L-Aba, and L-App were synthesized in preparative scale from corresponding 4 through asymmetric hydrogenation and acid-hydrolysis.  相似文献   

5.
Methyl 5(S), 6(S)-oxido-11-oxo-7-cis-9-trans-undecadienoate 5 was prepared and used for the synthesis of the novel 7-cis-LTD4 (9) as well as, after isomerization to the all-trans dienal ester 3, for that of the natural leukotrienes.  相似文献   

6.
tert-Butyl azidoformate (2) reacts with the conjugate bases of 3a, 7a, 9 (R1 = R2 = CH3), and 9 (R1 = CH3, R2 = H) to give products [4, 8, 12, and 14, respectively] in addition to the expected N-(tert-butoxycarbonyl)indole derivatives.  相似文献   

7.
Dieckmann cyclization of ethyl N-benzyl-N-[(ethoxycar-bonyl)methyl]succinamate (2) with sodium ethoxide gave regioselectively β-keto ester 3, whereas when using potassium tert-butoxide or potassium hydride as a base the regioisomer 4 was isolated as the main product. Transesterification of ethyl β-keto esters 3 and 4 with benzyl alcohol followed by hydrogenolysis and decarboxylation of the resulting benzyl esters 5 and 6 led to 1-benzyl- 2,5-piperidinedione (1). The preparation of some 4-alkyl- and 4-alkoxycarbonylalkyl derivatives was achieved by alkylation of 5 with the appropriate halide and further hydrogenolysis.  相似文献   

8.
The N-hydroxyazetidines 2 and 3 are prepared startinfrom 2,3-dihydroazete 1-oxides (1a and 1b0 by reduction with sodium borohydride and by reaction with a nucleophile, respectively. The N-thydroxyazetidines 2 and 3 can be oxidized with mercury (II) oxide to the corresponding nitrones 1; oxidation of the N-hydroxyazetidine 2a (unsubstituted at C-4) with two equivalent of lead tetraacetate tyields the N-tacetoxy β-lactam 4.  相似文献   

9.
The cycloaddition of α,β-epoxyaldehydes or ketones (2) with the ketene acetal MeHC=C(OMe)2 (1) gives epoxyoxetanes (3) in high yields. Without isolation they can be transformed into 4-hydroxy-5-(1-hydroxyalkyl)-γ-butyrolactones (6) via the epoxy esters 4 and trihydroxy esters (5). The lactones 6 appear to be valuable precursors for the synthesis of 5-(1-hydroxyalkyl)-3-methyl-2-5H-furanones (7) and 3-methyl-5-ylidene-2-5H-furanones (8)  相似文献   

10.
The dibenzo[de;hi]naphthacenyl dication (4) and dianion (5) have been generated from a mixture of the corresponding precursor hydrocarbons. The pmr spectra of 4 and 5 indicated that the positive and the negative charges were found to be fully delocalized over the molecules, respectively, consistent with the C2v-symmetry structures. The pmr chemical shifts of 4 correlate well with the Hückel charge densities.  相似文献   

11.
The structures of three brominated terpenoids which are natural products from the red alga Laurencia pinnatifida (Gmal. Lamour) are described. The structures of the sesquiterpenes 4 and 5 were determined by spectral comparison and chemical interconversion. The structure of the squalene-derived terpenoid 8 was secured by chemical transformation into thyrsiferol, a brominated triterpene previously isolated from the red alga Laurencia thyrsifera.  相似文献   

12.
The structural parameters of α- and β-CdUO4 crystals are determined by X-ray powder diffraction technique. α-CdUO4 is rhombohedral and cell parameters are a = 6.233(3) Å and α = 36.12(5)°. β-CdUO4 crystallizes in a C-centered orthorhombic cell with a = 7.023(4), b = 6.849(3), c = 3.514 (2) Å. The space groups are R3m for α-CdUO4 and Cmmm for β-CdUO4. α-CdUO4: 1U in (000), 1Cd in (121212), 2O(1) in ±(uuu), 2O(2) in ±(vvv); u = 0.113, v = 0.350, Z = 1. β-CdUO4: 2U in (000; 1212 0), 2Cd in (12 0 12; 0 12, 12), 4O(1) in (0, ±y, 0; 12, 12 ±y, 0), 4O(2) in (±x, 0, 12; 12 ±x, 12, 12); x = 0.159, y = 0.278, Z = 2. β-CdUO4 contains collinear uranyl UO2+2 groups with a UO(1) distance of 1.91 Å, located either along or parallel to the c axis whereas the UO(1) bond length in α-CdUO4 is 1.98 Å which is longer than the usual uranyl bond length.  相似文献   

13.
Asymmetric cyclizations of methyl (E)-3-oxo-9-phenoxy-7-nonenoate (1) or methyl (E)-3-oxo-9-(methoxycarbonyl)oxy-7-nonenoate (4) without added base were carried out in the presence of a catalytic amount of palladium(II) acetate and chiral diphosphine as ligands. Allylic carbonate 4 reacted by use of Pd(OAC)2-(S)-(R)-BPPFA at room temperature to give (R)-3-vinylcyclohexanone (3), after decarboxylation, in up to 48% e. e.  相似文献   

14.
Titanium(IV) chloride-mediated reaction of 4,5-dihydro-2-(trimethylsiloxy)-3-(trimethylsilyl)furan (1a) with acetaldehyde gave diastereomerically pure (3S*, 1′R*)-4,5-dihydro-3-(1′hydroxyethyl)-3-(trimethylsilyl)-2(3H)furanone (2a), which afforded selectively either (Z)- or (E)-α-ethylidene-γ-butyrolactone (3a) under proper conditions. Facile isomerization of 2a into diastereomerically pure (3S*, 1′R*)-4,5-dihydro-3-&{1′-(trimethylsiloxy)ethyl}-2(3H)furanone (4) suggests an intriguing stereochemical outcome from 2a to (E)-3a via an enolate of 4.  相似文献   

15.
Vinyl quinone methide (1) reacts with polyphenols to give cinnamylphenols (4) and neo-flavanoids (5). Oxidation of cinnamylphenol (4b) leads to malvidin (10) via the isolated intermediate flav-3-en-3o1 (8b).  相似文献   

16.
Under both static and flow thermolysis conditions, several compounds with an “aspidosperma” framework rearranged to “vinca” derivatives. Thus (-)1,2-dehydroaspidospermidine (4) rearranged to (-) gave vincane 14. Compound 6 rearranged to vincamine (13a) and 16-epi vincamine (13b) under either condition ; increasing the temperature resulted in formation of apovincamine (19) (pyrolysis) or vincamone thermolysis).  相似文献   

17.
The copolymerizations of N-(3-dimethylaminophenyl) maleimide (I) and 4-(2-chlorophenyl)azo-3-maleimido-N,N-dimethylaniline (II) with styrene were investigated; the copolymerization parameters of the pairs (I + styrene) and (II + styrene) and kp/kt12 hr I at 50° were determined; chain transfer to the maleimide ring of I was proved. The homopolymerization of styrene in the presence of 4-(2-chlorophenyl)azo-succinimide-N,N-dimethylaniline (III) was used to determine the ratio of the rate constant for addition of the polystyrene radical to the azo group in III to kp for styrene.  相似文献   

18.
The uranium chalcogenides α-US2 and α-USe2 crystallize in the tetragonal space group P4ncc and not I4mcm as previously reported. Their crystal structures have been determined from single-crystal X-ray diffraction data and refined to R = 0.041 and R = 0.034, respectively. Uranium atoms occupy two crystallographic sites: U(1) in (8f) and U(2) in (4c). The fourfold position, U(2), is incompletely filled with three uranium atoms which show a significant uniaxial delocalization. Properties are discussed in relation to this new crystal structure.  相似文献   

19.
In an attempt to prepare short-bridged hydroxymetacyclophanes 1b-d, the spirocyclohexadienones 2b-d were pyrolyzed by flash vacuum thermolysis (FVT). Instead of 1b-d, variable amounts of 4-(5-hexenyl)phenol (4b), β-hydroxybenzocycloalkenes (5b-d) and 4-(trans-1-alkenyl) phenols (6c-d) were obtained. The formation of these products is explained by invoking cleavage of a spiro bond in 2 under formation of the intermediate diradical 3 which, depending on the length of the aliphatic chain and on the temperature, has several pathways open for isomerization to spin-paired products.  相似文献   

20.
The C4erythro and threo diols (7) and (8) are converted either into the chiral epoxides (13) and (15) or into the enantiomers (14) and (16); the epoxide (13) is used as chiral synthon for the preparation of (3S,4S) 4-methyl-3-heptanol (21).  相似文献   

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