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1.
Under the conditions of the Wharton reaction, the (±)-epoxy-γ-dihydroionones 2 and 3 are transformed into the allylic alcohols 4–10 . γ-Damascols 4, 5 and 8 were oxidised to cis- and trans-γ-damascone 12 and 13 . Alternatively, dehydro-γ-damascol 18 was obtained by Wittig rearrangement of butinyl ether 17 , and converted into damascones 12 and 13 .  相似文献   

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Acid-mediated cyclisation of trienone 8 , readily available from 2,3-dimethylbutanal ( 1 ; five steps: 47% yield), using fluorosulfonic acid (6.8 mol-equiv.) in 2-nitropropane at ?70°, afforded a 14:9:1 mixture (70% yield) of (±)-cis-α-irone ( 9 ), (±)-trans-α-irone ( 10 ), and (±)-β-irone ( 11 ). Other acidic conditions examined, using 95% aq. H2SO4 solution, 85% aq. H3PO4 solution, or SnCl4, gave inferior results.  相似文献   

4.
Synthesis of (±)-α-Chamigrene Cis- and trans-β-ionol (cis and trans- 1 ) underwent acid catalysed dehydration to a mixture of the tetraenes 2–5 in 70–80% yield (Table 1). Irradiation of this mixtures made the 6-(Z), 8-(Z)-isomer 5 accessible (columns 3 and 4 in Table 1). Pyrolysis of the different mixtures at 170° showed, that both isomers, 3 and 5 respectively undergo electrocyclization to dehydrochamigrene ( 6 ). The latter was reduced to α-chamigrene ( 7 ) by hydrogen on Lindlar catalyst.  相似文献   

5.
(±)-α and β-Himachalene, 5 and 6 , have been synthesized in a convergent manner from 3,3-dimethylacrolein ( 9 ), the ester enolate 10 and the silyloxypentadienyllithium 7 . The key steps are the regioselective γ-addition of the dienal 13 to 7 and the intramolecular Diels-Alder addition 15 → 16 . Hydrogenolysis of the diethylphosphate group and functionalization at C (5) completed the synthesis of 5 and 6 .  相似文献   

6.
We describe here a new convergent and stereoselective synthesis of (±)-β-santalol. This synthesis involves in the last step an original deprotective method of methoxyethoxymethyl ether using pyridinium tosylate.  相似文献   

7.
The racemic spirosesquiterpenes β-acorenol ( 1 ), β-acoradiene ( 2 ), acorenone-B ( 3 ) and acorenone ( 4 ) (Scheme 2) have been synthesized in a simple, flexible and highly stereoselective manner from the ester 5 . The key step (Schemes 3 and 4), an intramolecular thermal ene reaction of the 1,6-diene 6 , proceeded with 100% endo-selectivity to give the separable and interconvertible epimers 7a and 7b . Transformation of the ‘trans’-ester 7a to (±)- 1 and (±)- 2 via the enone 9 (Scheme 5) involved either a thermal retro-ene reaction 10 → 12 or, alternatively, an acid-catalysed elimination 11 → 13 + 14 followed by conversion to the 2-propanols 16 and 17 and their reduction with sodium in ammonia into 1 which was then dehydrated to 2 . The conversion of the ‘cis’-ester 7b to either 3 (Scheme 6) or 4 (Scheme 7) was accomplished by transforming firstly the carbethoxy group to an isopropyl group via 7b → 18 → 19 → 20 , oxidation of 20 to 21 , then alkylative 1,2-enone transposition 21 → 22 → 23 → 3 . By regioselective hydroboration and oxidation, the same precursor 20 gave a single ketone 25 which was subjected to the regioselective sulfenylation-alkylation-desulfenylation sequence 25 → 26 → 27 → 4 .  相似文献   

8.
Formal Total Synthesis of (±)-Isocomen by Application of the α-Alkinon Cyclization A total synthesis of the racemic form of the sesquiterpene isocomene ( A ) was accomplished by application of the cyclopentenone anellation B→D (Scheme 1) which includes the α-alkynone cyclization C→D , a gas-phase flow thermolytic process. Starting with the known product 2 (Scheme 3) of the anellation B→D , the elaboration of ring C of A proceeded in 9 steps to the α-alkynone 16 (Scheme 5) which was cyclized at 540° selectively to give the angularly fused triquinane 4 (77%). A two-step procedure then led to 5 (Scheme 6), a last but one intermediate in a known total synthesis of (±)- A . The conversion of 16 to 4 also demonstrated the compatibility of an acetoxy function with the anellation sequence B→D .  相似文献   

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The racemic form of the bicyclic diterpene hydrocarbon δ-araneosene ( 4 ), endowed with the dolabellane skeleton, was prepared from geraniol in two different ways. The more efficient route involved 13 steps and proceeded with an overall yield of 3.6% (average: 77% per step). With this reference sample at hand, the hitherto elusive metabolite (?)- 4 , a likely biogenetic precursor of cycloaraneosene ((?)- 3 ) and sordaricin ((?)- 1 ), could finally be isolated in ≥ 99.5% purity from the neutral fractions of the mold Sordaria araneosa CAIN (Ascomycetes).  相似文献   

11.
A process for the synthesis of (±)-α-spirovetivene starting from I-oxo–2-carbethoxy-6, 10-dimethyl spiro[4.5]dec-6-ene(I)1 is described. The oxo group of I was reduced by the process of Coates2, and the resulting spiro ester (III) and spiro alcohol (IV) were transformed to (±)-α-spirovetivene by the process of Uijttewaal3 and by conventional methods.  相似文献   

12.
Both (±)-17α-hydroxytacamonine (3) and its 17β-isomer (4) were synthesized in two steps (one-pot) from aldehyde mixture 5/6 via the cyanohydrin reaction. NMR spectral characterization of isomer 3 revealed it to be unidentical with natural 17-hydroxytacamonine, whereas spectral data of isomer 4 were in agreement with those published for the natural isomer. The configuration at C-17 was confirmed by NOE difference spectroscopy.  相似文献   

13.
Stereoselective syntheses of (±)-epi-β-santalene (1) and (±)-epi-β-santalol (2) , minor constituents of East Indian sandalwood oil, are described. The starting material for both syntheses is the tricyclic hemiacetal 4 , readily accessible in two steps from norbornene.  相似文献   

14.
Hetero-Diels-Alder cycloaddition of acylnitroso dienophile 4 with the N-(butadienyl)pyrrolidinone derivatives 2a , b led with complete regioselectivity to the oxazine adducts 5a , b (Scheme 1). Sequential osmylation, protection of the ensuing glycol, and reduction of the N? O bond gave the expected hemiaminals 11a , b which were characterized by their crystalline sulfite adducts 12a , b (Schemes 1 and 2). Deprotection and saponification of the latter led to aminodeoxyerythrose and to aminodeoxyribose derivatives as an equilibrium of pyrrolidinose equivalents, i.e., hemiaminals 14a , b , imines 14′a , b , and dimers 14″a , b , respectively (Scheme 3). Hydrocyanic acid addition to 11a , b led ultimately to the proline derivatives 16a , b (Scheme 2). Compound 11b proved to be an inhibitor of syncytium formation in AIDS-infected cells.  相似文献   

15.
(±)-α-Acoradiene (4) has been synthesized from 3-methoxy-2-cyclohexenone by a sequence of 8 steps. The key steps (Scheme 6) are the regio- and stereoselective photo[2+2]addition 7→6 and the reductive fragmentation 6→5 .  相似文献   

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Novel dihydroiridium(III) complexes containing mono- and bi-dentate sulfur ligands have been isolated. The cationic complexes [Ir(COD)L2]ClO4 (COD = 1,5-cyclooctadiene, L = tetrahydrothiophene (tht) or trimethylene sulfide (tms); L2 = (CH3S)2(CH2)3 (dth)), [Ir(COD)(L-L)]2(ClO4)2 (L-L = 1,4-dithiacyclohexane (dt) or (t-BuS)2(CH2)2 (tmdto)) and [Ir(CO)2(tmdto)]2-(ClO4)2 react with H2 to give the corresponding iridium(III) dihydrides: [IrH2COD)L2]ClO4 (Ia: L = tht, Ib: L = tms, Ic: L2 = dth), [IrH2(COD)-(L-L)]2(ClO4)2 (IIa: L-L = tmdto, IIb: L-L = dt) and [IrH2(CO)2(tmdto)]2-(ClO4)2 (III). The 1H NMR chemical shifts and ν(IrH) data are discussed.  相似文献   

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