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1.
The trans and cis diastereoisomers of 2-bromo-6-t-butylcyclohexanone (7 and 8) and of 2-bromo-3-t-butylcyclohexanone (10 and 9) have been prepared and subjected to hydrogen bromide catalyzed isomerization. Whereas bromoketones 7 and 8 underwent only epimerization, isomers 9 and 10 were completely converted into an equilibrium mixture of cis- and trans-2-bromo-5-t-butylcyclohexanone (12 and 13). The spectral parameters (IR, UV, NMR), as well as the equilibrium distribution of the couple 7-8, were consistent with chair conformations for compounds 7, 8 and 9, but indicated for isomer 10 a flexible form in which both the bromine-t-butyl steric interaction and the electrostatic repulsion between Br and CO group are relieved.  相似文献   

2.
The stereochemical assignment of the bicyclo[4.2.0]octane-cis-7,8-diols is reinvestigated. It is shown that the cis-diols prepared by different routes are indeed stereoisomers, the lower melting being the exo-isomer (1), the higher melting the endo-isomer (2). The synthesis of the previously unknown trans-fused bicyclo[4.2.0]octane-cis-7,8-diol (3) via photosensitized cycloaddition of vinylene carbonate to cyclohexene is described.  相似文献   

3.
The synthesis and characterization of trans/cis-[RuCl2(dppf)(diimines)], dppf = 1,1′-bis(diphenylphosphino)ferrocene; diimines = 2,2′-bipyridine (trans/cis-(1)), the new complexes with 4,4′-dimethyl-2,2′-bipyridine (trans/cis-(2)) and 1,10-phenanthroline (cis-(3)) are presented. The complexes were synthesized using two routes and the trans/cis-isomer formation is dependent upon conditions and the precursor applied. The trans-isomer (kinetic) readily isomerizes to the cis-isomer (thermodynamic) when exposed to light (fluorescent) and this process was followed by cyclic voltammetry and UV-vis. The electrochemical studies on these complexes reveal that Fe(III)/Fe(II) couples are insensitive to the isomer (trans/cis) formed, but the Ru(III)/Ru(II) couples are dependent on the isomer. Transfer-hydrogenation reactions for reduction of acetophenone were conducted using complexes cis-(1) and cis-(2) and the results are compared with that obtained for similar complexes. X-ray structure for cis-(3) are presented and discussed.  相似文献   

4.
The photochemistry of the triplets of 10- and 11-membered ring 1,3,5-trienes has been studied. At ?70° cis,trans,cis-cyclodeca-1,3,5-triene goes only to the cis,cis,cis-isomer. At 25°, this latter compound is converted into cis-bicyclo[4.4.0]deca-2,4-diene via the thermally labile trans,cis,trans-cyclodeca-1,3,5-triene. At ?70° cis,trans,cis-cycloundeca-1,3,5-triene is converted to the cis,cis,cis-isomer. At 25°, this primary ptotochemical product undergoes a thermal 1,7-sigmatropic hydrogen migration to yield the trans,cis,cis, isomer. This latter triene upon sensitized irradiation yields cis-bicyclo[5.4.0]undeca-8,10-diene and trans-bicyclo[7.2.0]undeca-2,10-diene. The ratio of these latter two products changes with the temperature of the sensitized reaction. The possible mechanisims of these transformations are discussed.  相似文献   

5.
The structures of absolute configurations of the halogenated vinyl acetylenes which are natural products from the red alga Laurencia pinnatifica (Gmal. Lamour) are described. The structure of trans- pinnatifidenyne 2 was determined by spectral, chemical and X-ray diffraction analyses. The structure of cis-pinnatifidenyne 1 is based on spectral comparison and chemical interconversion with the trans-isomer 2. The structure of the acyclic trienyne 8 was secured as: (6R,7R)-3-cis, 9-cis,12-cis,6-acetoxy,7-chloropentadeca-3,9,12-trien-1-yne by synthesis from cis-pinnatifidenyne 1. The reactivity of these compounds to various conditions of catalytic hydrogenation has been examined in detail.  相似文献   

6.
Silyl isoxazolines have been synthesized by [2+3] cycloaddition reaction of nitrile oxides to vinyl- and allylsilanes. The addition of 3-pyridylnitrile oxide to 1,3-divinyl-1,1,3,3-tetraphenyldisiloxane affords 1,3-bis{5-[3-(3-pyridyl)isoxazolin-2-yl]}-1,1,3,3-tetraphenyldisiloxane; the latter exists as a mixture of trans- and cis-isomers.The bond angle of the Si–O–Si fragment in thetrans-isomer equals 180(3)° and in the cis-isomer it is 162(3)°.The pharmacological properties of 4-[3-(5-trimethylsilylisoxazolin-2-yl)]pyridinium-chloride have been studied.  相似文献   

7.
A.T. Bottini  L.J. Cabral 《Tetrahedron》1978,34(21):3195-3199
Dispiro[2.0.2.2]oct-7-ene 1 was synthesized by debrominatioa of cis- and trans-7,8-dibromodispiro[2.0.2.2]octane 3a with LAH and by dechlorination of cis- and trans-7,8-dichlorodispiro[2.0.2.2]octane 3b with magnesium. Stepwise electrophilic additions to 1 of HBr, HI, Br2 and Cl2 were studied. The major products (and yields) from these reactions were: 7-bromodispiro[2.0.2.2]octane 2a (43%), 4-iodo-4,5-ethanospiro[2,3]hexane 4b (ca. 50%); trans-3a (40%); and cis-3b (20%). Free-radical addition of hydrogen bromide to 1 gave an 80% yield of 7-bromodispiro[2.0.2.2]octane 2a. At ?10°, hydroboration-oxidation of 1 was found to give mainly 7-hydroxydispiro[2.0.2.2]octane 2a in ca. 90% yield; at 25°, near equal amounts of 2c and 4-(2-hydroxyethyl) spiro[2.3]hex-4-ene 14 were obtained.  相似文献   

8.
Reactions of 1 - bromo - 7 - (2 - hydroxyethoxy)cycloheptene 2 and its chloro analogue 3 with potassium t-butoxide in dimethyl sulphoxide or tetrahydrofuran gave cycloheptatriene and cis - 8,11 - dioxabicyclo[5.4.0]undec - 2 - ene 18 as the major products together with small amounts of the trans-isomer 17,8,11-dioxabicyclo[5.4.0]undec - 1(7) - ene 14, 8,11 - dioxabicyclo[5.4.0] - undec - 1 - ene 19, cyclohept - 2 - enone ethylene ketal 15, cyclohept - 3 - enone ethylene ketal 16, and 1- and 2 - t - butoxycyclohepta - 1,3 - diene 20. Similar reactions of 3 - bromo - and 3 - chloro - 4 - (2 - hydroxyethoxy)bicyclo[3.2.1]oct - 2 - ene 4 and 5 gave 4,7 - dioxatricyclo[7.2.1.03,8]dodeca - 2 - ene 26 as the major product together with small amounts of 3,6 - dioxatricyclo[7.2.1.02,7]dodeca - 2(7) - ene 27 and bicyclo[3.2.1]oct - 3 - ene - 2 - one ethylene ketal 28. Mechanisms for these transformations are discussed.  相似文献   

9.
《Tetrahedron》1986,42(6):1687-1691
Molecular distortions in bridged [4.4]spirononanes and fenestranes are discussed in terms of symmetry deformation coordinates. This analysis reveals that the central, quaternary carbon atom in most of these compounds shows mainly a decrease of the two opposite ring bond angles, whereas the distortions in fenestranes are dominated by an increase of the two opposite bond angles. Dicyclopentadienone 8 serves as the starting material for the preparation of [5.5.5.5]fenestranes. In the key step of the synthesis, the Pd-catalyzed reductive transannular reaction of the enaminonitrile 13 and the ketolactone 17, (all-cis)[5.5.5.5]fenestrane 6 is formed instead of the (cis,cis,cis,trans)-isomer 7.  相似文献   

10.
New cis- and trans-3-aryl-4-[2-(2-vinylphenyl)ethenyl]sydnones 2, aryl = phenyl, p-tolyl were prepared and transformed on irradiation in the presence of acrolein to a pyrazoline derivative that aromatized during isolation to trans-1-tolyl-3-[2-(2-vinylphenyl)ethenyl]pyrazole 7 and trans-5-formyl-1-tolyl-3-[2-(2-vinylphenyl)ethenyl]pyrazole 8.  相似文献   

11.
A convenient entry to both title compounds 1 and 2, as well as to cis- and trans-4-iodomethyl-bicyclo [3.1.0]-hexan-2-ones 3and 4 and to 4-methyl-bicyclo [3.1.0]-hex-3-en-2-one 5 involving base-promoted reactions of cis- and -trans-3,4-diiodomethylcyclopentanones 6 and 7 is reported, and the behaviour of 6 and 7 towards different bases. bfv40bp4761b  相似文献   

12.
《Tetrahedron: Asymmetry》2006,17(23):3193-3196
Twelve-membered cyclic cis- and trans-β-lactams 1b and 2b and the corresponding cyclic cis- and trans-β-amino acid enantiomers, 1a, 1c and 2a, 2c were prepared through the CAL-B-catalysed enantioselective ring cleavage of racemic cis-13-azabicyclo[10.2.0]tetradecan-14-one, (±)-1, and trans-13-azabicyclo[10.2.0]tetradecan-14-one, (±)-2. High enantioselectivities (E >200) were observed for the ring opening of both the cis- and trans-β-lactams when the Lipolase-catalysed reactions were performed with 0.5 equiv of H2O in i-Pr2O at 70 °C. The resolved β-lactams 1b and 2b (yield ⩾47%) and β-amino acids 1a and 2a (yield ⩾32%) could be easily separated.  相似文献   

13.
2,15 - Dimethoxycarbonyl - [15]annulenone 4,7:10,13 - dioxide (14) has been prepared by the condensation of cis -α,β -bis(5 - formyl - 2 - furyl)ethy]ene (13) with dimethyl acetonedicarboxylate. Treatment of 14 with conc H2SO4 led to 4,7:10,13-dioxido[15]annulenone 2,15-dicarboxylic acid anhydride (17), which was subsequently converted to the corresponding dicarboxylic acid (18) by dilute KOH. Decarboxylation of 18 gave rise to two isomeric [15]annulenone 4,7:10,13 - dioxides, i.e., the tri-cis isomer (7) and the mono - trans - di - cis isomer (8).Regarding to the ring current effects, the proton chemical shifts of these [15]annulenones were compared with those of a reference model, 4,7:10,13 - dioxido - cyclopentadecaheptaene (2.4.6.8.10.12.14) (3). Both of the parent [15]annulenones (7 and 8) have been interpreted as nondiatropic, while the anhydride (17) has been shown to be diatropic, sustaining an induced diamagnetic ring current. The enforced planarity and symmetrical geometry of the anhydride have been discussed. As expected, when 7, 8, 14, 17 and 18 were dissolved in CF3COOH or conc H2SO4, completely delocalized [15]annulenium cations were produced, all of which proved to be diatropic. Three possible geometrical isomers of these 14π cations were established experimentally.  相似文献   

14.
Lipase-catalyzed hydrolysis of (E)-2-[α-(acetoxyimino)benzyl]-1,1′-binaphthyl [(±)-1a] and (Z)-2-[α-(acetoxyimino)benzyl]-1,1′-binaphthyl [(±)-1b] yielded optically active (E)-2-[α-(hydroxyimino)benzyl]-1,1′-binaphthyl [(S)-2a] and (Z)-2-[α-(hydroxyimino)benzyl]-1,1′-binaphthyl [(R)-2b], respectively, with high enantiomeric excess. Selectivity for the opposite enantiomer of the axial binaphthyl skeleton was shown by (Z)-isomer 1b against (E)-isomer 1a.  相似文献   

15.
A thermodynamically less stable cis isomer of 1,2-diphosphacycle was prepared from the corresponding trans isomer. Diphosphine, in which a PhP-PPh bond bridges the 1,8-positions of naphthalene, 1,2-diphenyl-1,2-dihydronaphtho[1,8-cd][1,2]diphosphole (1), was first prepared according to a previously reported method, and the trans isomer of 1 was irradiated in tetrahydrofuran with UV-vis light to reach equilibrium with cis-1 in a trans:cis ratio of 1:2. When a similar photochemical conversion was carried out using a saturated hexane solution of trans-1, cis-1 was precipitated in a good yield of 94%. The configuration of cis-1 was confirmed by X-ray analysis. Both cis- and trans-1 diphosphine ligands were used for the preparation of binuclear gold complexes. The crystal structure of (μ-cis-1)-[AuCl]2 demonstrated that the two lone pairs of cis-1 are suitably directed for arrangement of the two gold centers in close proximity to each other. The two independent (μ-cis-1)-[AuCl]2 molecules in the crystal were found to form a dimer through the multiple intermolecular interaction among the gold centers.  相似文献   

16.
《Tetrahedron: Asymmetry》2003,14(22):3569-3574
Asymmetric cyclopropanation of styrene 1 (as the limiting reagent) was demonstrated using excess ethyl diazoacetate and catalytic Ru(ip-Pybox). Selective hydrolysis of the resulting 90:10 trans:cis mixture of cyclopropane 4 generated cyclopropyl acid 2 as a 96:4 trans:cis mixture with 84% e.e. for the trans-cyclopropane. Further purification and enantiomeric enrichment was achieved by diastereoselective crystallization with (+)-dehydroabeitylamine to afford the (R,R)-isomer with ≥99.9% e.e in 60–65 M% yield starting from styrene 1.  相似文献   

17.
Milen G Bogdanov 《Tetrahedron》2004,60(11):2525-2530
Homophthalic anhydride (1) reacts with wide variety of aromatic aldehydes, in the presence of chloroform and DMAP (N,N-dimethyl-4-amino-pyridine) at room temperature, to give in high yields cis- and trans-1-oxo-isochroman-4-carboxylic acids. Under these conditions, the trans-isomer is predominant and formation of Perkin-type products was not observed in contrast to the reaction carried out in the presence of pyridine. The unexpected trans-6-oxo-11-thiophen-2-yl-11,12-dihydro-6H-dibenzo[c,h]chromene-12-carboxylic acid methyl ester (8) was isolated when the reaction between 1 and thiophene-2-carbaldehyde was carried out in pyridine.  相似文献   

18.
Conjugated tetraenes with both central double bonds of cis configuration undergo a series of thermal reactions, the observable products being markedly dependent on the nature of the terminal substituents. Dimethyl 2E,4Z,6Z,8E-decatetraene-1,10-dioate (16) was prepared and found to cyclize readily at 50° to trans dimethyl 2,4-bicyclo[4.2.0)octadiene-6,7-dicarboxylate (18). This reaction proceeds to equilibrium, and the rates and equilibrium constants at the indicated temperatures are: 3.0 × 10-5 sec-1 ?40°; 8.2 × 10-5 sec-1, 16.0,50°; ?10.0,75°; ?7.47,100° with the equilibrium favoring (18). A sample of 1,8-diphenyl-1E,3Z,5Z;7E-octatetraene (1) showed no reaction below 120°, and at 175° all trans 1,8-diphenyl-octatetraene, cis and trans stilbenes, trans-5-phenyl-6(cis-styryl)-1,3-cyclohexadiene cis-5-phenyl-6-(trans-styryl)-1,3-cyclohexadiene, and cis and trans 6,8-diphenyl-tricyclo[3.2.1.02.7]oct-3-enes were formed. At 100° in the presence of excess dimethyl acetylenedicarboxylate 1 gave dimethyl trans-3,4-diphenyltricyclo[4.2.2.02.5]deca-6,9-dien-6,7-dicarboxylate. Finally 1,4-di(1-cyclohexen-1-yl)-1,3-batadiyne, hydrogenated over a Lindlar catalyst, gave only tricyclo[10.4.0.06,11]hexadeca-1,3,5-triene.  相似文献   

19.
Six new divalent lanthanide complexes using triglyme (trigly) and tetraglyme (tetgly) as achiral ligands have been prepared, using a facile synthetic method, in search for enantioselective solid-state reagents. The crystal structures of cis-[SmI2(trigly)thf] (1), trans-[YbI2(trigly)thf] (2), trans-[SmI2(trigly)dme] (3), trans-[YbI2(tetgly)] (4), trans-[EuI2(tetgly)thf] (5), and [Sm(tetgly)2][SmI3(tetgly)]I (6) have been determined. All complexes, except 5, are chiral. The 10-coordinate cation in 6 displays a helical chirality since the two tetraglyme ligands are wrapped around the samarium ion. Since trans-[YbI2(tetgly)] (4), which has a chiral arrangement of terminal methyl groups, crystallizes as a conglomerate, preferential crystallization and consequent enantioselective reduction of acetophenone was attempted, but resulted in racemic products, possibly on account of racemic twinning in 4.  相似文献   

20.
The title 9-borabicyclo[3.3.1]nonane(9-BBN) ate complex (1) brings about selective removal of tertiary alkyl, benzyl and allyl halides to give the corresponding hydrocarbons in excellent yields without concomitant attack on secondary, primary and aryl derivatives. The reduction of cis- and trans - 4 - t - butyl - 1 - methylcyclohexyl chlorides (2) with 1 gives 4 - t - butyl - 1 - methylcyclohexanes (3) with partial inversion of configuration in cyclohexane, while that in benzene gives thermodynamically stable trans-3 predominantly. The reactions of 1,1 - dimethyl - 5 - hexenyl chloride (4) and 1,7,7 - trimethylbicyclo[2.2.1]hept - 2 - yl chloride (8) with 1 proceed with the rearrangements characteristic to a carbonium ion intermediate. The reduction of 1 - ethyl - 1 - methylpentyl chloride with 1 follows a second-order rate equation.  相似文献   

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