Publication | Closed Access
Molecular Recognition and Chirality Sensing of Epoxides in Water Using <i>Endo</i>-Functionalized Molecular Tubes
148
Citations
70
References
2017
Year
Chemical BiologyMolecular TubesChiral EpoxidesBioorganic ChemistryEngineeringBiosensing SystemsBiochemistryNatural SciencesAsymmetric Epoxidation ConditionsBioanalysisOrganic ChemistryAnalytical ChemistryChemistryMolecular RecognitionChirality SensingChemical SensorBiophysicsBiomolecular Engineering
Chiral epoxides are important intermediates in chemistry and biology. The high-throughput screening of asymmetric epoxidation conditions requires fast determination of the absolute configurations and ee values of chiral epoxides. Herein, we report molecular recognition and chiroptical sensing of epoxides in water using endo-functionalized molecular tubes. The absolute configurations and ee values were simultaneously determined by circular dichroism spectroscopy. In addition, real-time monitoring as well as the application to real asymmetric epoxidation was demonstrated. The method is simple, environmentally friendly, and amenable to high-throughput screening.
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