Publication | Closed Access
Molecular Engineering. 8.<sup>1</sup> Kinetic and Conformational Studies of Resorcin[4]arene-Based <i>C</i><sub>4</sub> Tetraoxatetrathiahemicarceplexes: Carceroisomerism and Twistomerism
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Citations
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References
2001
Year
Combinatorial ChemistryOrganic Material ChemistryFree Liquid StateEngineeringBiochemistryNatural SciencesConformational StudiesIsomerization Energy BarriersMolecular BiologyOrganometallic ElectrochemistryOrganic ChemistryChemistryMolecular EngineeringNew CMolecular ChemistrySynthetic ChemistryBiomolecular Engineering
New C(4v) tetraoxatetrathiahemicarcerands and their six hemicarceplexes containing DMF, DMA, DMSO, or NMP were synthesized and characterized. Their conformations, kinetic properties, carceroisomerism, and twistomerism were studied by VT, 2D COSY, NOESY, and ROESY (1)H NMR experiments. The decomplexation rates of DMF or DMA were very slow with high activation energy barriers (73 and 104 kJ mol(-1), respectively) and the complexed guests feel more constriction than their free liquid state. The largest isomerization energy barrier of carceroisomers was 15.4 kcal mol(-1), and the isomerization energy barriers of twistomers are significantly larger than those of carceroisomers.
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