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RESEARCH PRODUCT
Conformational properties of cyanomethoxy calix[4]arenes.
Volker BöhmerMichael BolteCrenguta Danilasubject
1h nmr spectroscopyChemistryOrganic ChemistryEtherActivation energyKinetic energyBiochemistryTetrachloroethanechemistry.chemical_compoundOrganic chemistryPhysical chemistryPhysical and Theoretical ChemistryBenzeneSingle crystalIsomerizationdescription
O-Alkylation of the dinitro calix[4]arene 2, easily available by selective ipso-nitration of the di-cyanomethyl ether 1, with allylbromide (DMF/Cs2CO3) gave tetraethers 3 and 4 with anti- and syn-orientations of the two allyl ether residues. The two possible stereoisomers of 3 in the partial cone and 1,2-alternate conformation exist as an equilibrium mixture which could be quantitatively analysed by 1H NMR spectroscopy. The temperature dependence of this equilibrium leads to ΔH0 = − 7.6 to −9.7 kJ mol−1 in different solvents (tetrachloroethane, benzene, dimethylsulfoxide). Since 3(1,2-alt) could be obtained in pure form, its isomerisation to the equilibrium mixture with 3(paco) could be followed also kinetically. An activation energy of Ea = 110.5 kJ mol−1 was found for this reaction in DMSO-d6. The results were confirmed by similar studies with tetraethers 5 and 6 obtained by O-allylation of 1, although exact thermodynamic and kinetic studies were not possible in this case, since the NMR signals of the respective isomers were strongly overlapping. Single crystal X-ray structures were obtained for 2, 3(1,2-alt), 4(paco) and 5(1,2-alt).
year | journal | country | edition | language |
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2005-09-21 | Organicbiomolecular chemistry |