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  • Bicyclo[3.3.1]nonane, derivatives of  (3)
  • Asymmetric synthesis  (2)
  • 1
    ISSN: 0947-3440
    Keywords: Barbaralanes ; Tricyclo[3.3.1.02,8]nona-3,6-dienes ; Bicyclo[3.3.1]nonane, derivatives of ; Vinyl sulphones ; Nitriles, α,β-unsaturated, from vinyl sulphones ; Esters, α,β-unsaturated, from nitriles ; 2-Oxaadamantanes, cleavage of ; 2-Oxatricyclo[3.1.1.15,7]decane, derivatives of ; Phenylcerium(III) chloride reagent ; Bromination with N-bromosuccinimide ; Cyclisation by debromination with the zinc-copper couple ; Reversed-phase liquid chromatography, preparative ; Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Short and efficient syntheses of the barbaralanes 2e-h are reported. Meerwein's diketone 9 is converted into the bis(vinyl sulphide) 10 by the action of 4-chlorothiophenol in the presence of titanium(IV) chloride and triethylamine. Oxidation of 10 with sodium perborate in acetic acid affords the bis(vinyl sulphone) 11 which is treated with potassium cyanide supported on aluminium oxide to yield the unsaturated dinitrile 8. Bromination of 8 with N-bromosuccinimide and subsequent reductive cyclisation of the resulting exo,exo dibromodinitrile 13 with the zinc-copper couple furnish 3,7-dicyanobarbaralane (2e) in 53% overall yield based on 9. - Treatment of dinitrile 8 with hydrochloric acid in boiling methanol followed by hydrolysis of the intermediate Pinner salt yields the dimethyl dicarboxylate 14 which is brominated to afford the exo,exo dibromo diester 15. Reductive cyclisation of 15 gives rise to the formation of dimethyl 3,7-barbaralanedicarboxylate (2f) in 49% overall yield based on 9. - Bicyclo[3.3.1]nonane-3,7-dione (7) is converted into a mixture of the bis(vinyl sulphones) C2- and Cs-17 (1:1) as described for 9 → 11. Bromination of this mixture yields a single exo,exo dibromo compound 18 which is cyclised by the zinccopper couple to afford 3,7-bis(phenylsulphonyl)barbaralane (2g) in 56% overall yield based on 7. - The known phenyl-2-oxaadamantanol 21a is cleaved by the action of boron trifluoride and acetic anhydride to yield the bicyclo[3.3.1]none-none 22. The difluoroboron complex 23 is obtained under more rigorous conditions. Addition of phenylcerium(III) chloride to 22 followed by dehydration of the endo alcohol 24 yields the diphenyldiene 25. Bromination of 25 and subsequent reductive cyclisation of the exo,exo dibromodiphenyldiene 26 furnish 3,7-diphenylbarbaralane (2h) which is isolated by preparative reversed-phase chromatography in 50% overall yield based on 7. - The configurations and conformations in the crystals are elucidated by X-ray diffraction analyses for the bicyclo[3.3.1]nonane derivatives 7, 13, 15, 18, 22-24, and 26 and the barbaralanes 2e-g. In the solid state, 2e and f exist as pairs of rapidly rearranging nonequivalent valence tautomers while the atomic distances observed for 2g indicate the presence of a single nonrearranging valence tautomer.
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  • 2
    ISSN: 1434-193X
    Keywords: Axial chirality ; Biaryls ; Atropisomerism ; Dynamic kinetic resolution ; Asymmetric synthesis ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Configurationally unstable lactone-bridged biaryls 4 are cleaved atropo-diastereoselectively using chiral menthol-derived alkali metal alkoxides, to give axially chiral biaryl esters of type 5 in high yields and excellent diastereomeric ratios of up to 〉 99:1. The method permits the optional preparation of each of the two atropisomers from the same lactone precursor (“atropo-divergence”), simply according to the choice of the appropiate mentholate or its enantiomer as the O-nucleophile - or by the use of the mentholate in solution or in suspension. Undesired minor atropisomers of 5 possibly formed (if at all) can be recycled (“axially chiral economy”) by cyclization back to the lactone 4. For the preparation of larger amounts of enantiopure biaryl alcohols 9, an efficient reaction sequence was developed: alcoholysis of 4 → in situ reduction → crystallization. The synthetic value of these alcoholysis reactions for asymmetric biaryl synthesis is illustrated by the transformation of 5 into a broad series of enantiopure biaryls of type 6 with various functional groups ortho to the axis.
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  • 3
    ISSN: 1434-193X
    Keywords: Asymmetric synthesis ; Automerisation ; Circular dichroism ; Conformation analysis ; Enantiomeric resolution ; Polycycles ; Solid-state structures ; Solvent effects ; Thermochromism ; Transition states ; Chemistry ; General Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: Diphenylbicyclo[3.3.1]nonane-2,6-dione rac-3 is resolved in 57 % overall yield by chromatographic separation of the diastereomeric (R)-N-(1-phenylethyl)carbamates 9 which are obtained from (R)-(1-phenylethyl) isocyanate (8) and the 6-hydroxydiphenylbicyclo[3.3.1]nonan-2-ones endo- and exo-4. The enantiomers (1R)- (e.r. = 98:2) and (1S)-3 (e.r. = 97:3) are regenerated from 9 by reduction with lithium aluminium hydride followed by Swern oxidation of the resulting diols 5. The title compound (1S)-1 is synthesised in three steps from (1S)-3 in improved yield on the route that had led to rac-1. The absolute configurations are established by X-ray diffraction analyses of the carbamates endo-(1R)-9 and exo-(1S)-9. X-ray diffraction analyses were also performed of the camphanoate (1R)-7, the intermediates rac-endo-4 and (1S)-3, and the title compound (1S)-1. Hydroxy ketone rac-endo-4 adopts similar conformations in the solid state and in solution as shown by a comparison of vicinal 1H,1H coupling constants from proton spectra with those calculated from torsional angles in the crystal. The molecular structures of (1S)-1 and (1S)-3 closely resemble those of the corresponding racemates investigated previously. These results show (i) that intermolecular interactions in the solid state are of minor importance and (ii) that the unusually long C2-C8 distance of (1S)-1 and rac-1 (168 pm) is a molecular but not an averaged property due to a non-degenerate Cope rearrangement in the crystal. CD spectra are reported for (1R)- and (1S)-3, the unsaturated dicarbonitrile (1S)-13, and (1S)-1. The CD spectrum of (1S)-1 exhibits a weak positive band at 459 nm where rac-1 shows a temperature-dependent absorption which has been assigned to the higher, vibronic state represented by rac-1*. The intensity of the weak CD band depends on the temperature and the solvents in the same way as the UV/Vis absorption of rac-1. This supports the conclusion that both bands originate from the same source, viz. the transition state 1* of the degenerate Cope rearrangement 1 ⇄ 1′.
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  • 4
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 126 (1993), S. 1047-1060 
    ISSN: 0009-2940
    Keywords: Bicyclo[3.3.1]nonane, derivatives of ; 2-Oxatwistane, derivative of ; 2-Oxatricyclo[4.4.0.03,8]decane, derivative of ; Phenyllithium-cerium(III) chloride reagent ; 1,2-Addition to carbonyl groups ; Transannular reaction ; Dipotassium tetraphenylbicyclo[3.3.1]nonadienediide by deprotonation with butylpotassium ; Barbaralane, 2,4,6,8-tetraphenyl-, by oxidation of dipotassium tetraphenylbicyclo[3.3.1]nonadienediide with 1,2-dibromo-ethane ; Thermochromism ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: 2,4,6,8-Tetraphenylbarbaralane - an Orange-Red, Thermochromic Hydrocarbon Devoid of a Chromophore[1,2]The diphenylbicyclo[3.3.1]nonanedione 6 adds phenylcerium-(III) dichloride to afford a high yield of the triphenyl-2-oxa-twistanol 8. In contrast, phenyllithium yields a mixture of tri-phenylhydroxyketone exo-7, tetraphenylbicyclo[3.3.1]nona-nediol 9, and 8. The latter is dehydrated by sulfuric acid in acetic acid to produce the triphenylbicyclo[3.3.1]nonenone 10 in almost quantitative yield. Addition of phenylcerium(III) dichloride to 10 affords a 3:2 mixture of the tetraphenylbicy-clo[3.3.1]nonenols exo- and endo-11 which may be separated by chromatography. Dehydration of the mixture yields quantitatively the tetraphenyldiene 12. On treatment with an excess of butylpotassium in pentane, 12 is converted to the deep violet, crystalline dipotassium salt 17 which may be purified by reprecipitation from its tetrahydrofuran solution with pentane. When the solution of 17 in tetrahydrofuran is slowly added to an excess of 1,2-dibromoethane at -60°C, the dianion is immediately oxidized to produce the tetraphenylbarbara-lane 4 which is isolated in 30% yield as orange-red crystals after chromatography. - The structures of the new compounds are based on spectroscopic evidence and X-ray diffraction analyses of 4, 8, exo-11, and 12. The conformations in solution are inferred on the basis of vicinal proton coupling constants and a comparison with coupling constants calculated with the aid of the Karplus equation from torsional angles obtained by X-ray diffraction analyses. The conformation of exo-11 in solution closely resembles that present in the crystal. - While the barbaralane 4 exists as a pair of very rapidly rearranging degenerate valence tautomers in solution, the degeneracy is lifted in the crystal lattice. As a result, the crystal consists of two rapidly rearranging but non-equivalent valence tautomers in a ratio of 9:1 as estimated from the apparent atomic distance C2-C8 of 4 and the C2-C8 bond length of the model barbaralane 18. - The orange-red colour of 4 in the crystal and in solution results from a pronounced shoulder in the UV/Vis spectrum at 430 nm, the intensity of which strongly depends on the temperature. Thus, 4 is the first barbaralane which exhibits colour though it is lacking a classical long-wavelength chromophore.
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  • 5
    Electronic Resource
    Electronic Resource
    Weinheim : Wiley-Blackwell
    Berichte der deutschen chemischen Gesellschaft 126 (1993), S. 1465-1475 
    ISSN: 0009-2940
    Keywords: Bicyclo[3.3.1]nonane, derivatives of ; Barbaralane, 2,6-dicyano-4,8-diphenyl- ; Cyanohydrins, O-(trimethylsilyl)- ; Hydrogen fluoride - phosphorus oxychloride - pyridine, elimination of trimethylsilanol by ; Phenylcuprate reagent, conjugate addition of ; Cyclization of debromination with the zinc-copper couple ; Phase-transfer catalysis ; Chlorination by hexachloroethane ; Cyclization by dehydrochlorination ; Thermochromism ; Chemistry ; Inorganic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Notes: 2,6-Dicyano-4,8-diphenylbarbaralane[1]Conjugate addition of the phenylcuprate reagent, obtained from phenyllithium, copper(I) cyanide, and boron trifluoride-diethylether, to the bicyclo[3.3.1]nonadienedione 3 affords the diphenylbicyclo[3.3.1]nonanedione 4 in high yield. Catalyzed by the potassium cyanide/18-crown-6 complex, addition of trimethylsilyl cyanide produces a mixture of the diastereomeric bis[O-(trimethylsilyl)cyanohydrins] exo,exo-, exo,endo- and endo,endo-5. The hydrogen fluoride - pyridine complex in phosphorus oxychloride as solvent and, subsequently, an excess of pyridine convert the diastereomers 5 into the unsaturated γ,γ′1-diphenyldinirile 6. This is brominated by N1-bromosuccinimide to yield the γ,γ′1-dibromodinitriles exo- and endo- 7 (6:1). The predominant diastereomer exo-7 is debrominated by the zinc-copper couple to afford the orange-red title compound 2 in 78% yield. More conveniently, the unsaturated dinitrile 6 is converted to 2 in a single step by treatment with hexachloroethane and concentrated aqueous sodium hydroxide in the presence of tetrabutylammonium hydroxide as phase-transfer catalyst. Surprisingly, low yields of 2 are also obtained when the bis[O-(trimethylsilyl)cyanohydrins] 5 or the unsaturated dinitrile 6 are treated with phosphorus oxychloride in boiling pyridine. - The structures of the new compounds are based on spectroscopic evidence and X-ray diffraction analyses of 2, 4, and endo,endo-5. The conformations of 4 and endo,endo-5 in solution are inferred on the basis of vicinal proton coupling constants and a comparison with coupling constants calculated with the aid of the Karplus equation and torsional angles obtained by X-ray diffraction analyses. - While the barbaralane 2 exists as a pair of very rapidly rearranging degenerate valence tautomers in solution, the degeneracy is lifted in the crystal lattice. As a result, the crystal consists of two rapidly rearranging but non-equivalent valence tautomers in a ratio of 9:1 as estimated from the apparent atomic distance C2-C8 of 2 and the C2-C8 bond length of non-rearranging barbaralanes. - The colour of 2 in the crystal and in solution results from a maximum at 436 nm which increases on heating of the solution to 450 K. Cooling to 77 K results in reversible fading and the disappearance of the maximum. Thus, 2 is a barbaralane like 1 which exhibits colour though it is lacking a classical long-wavelength chromophore.
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