Publication | Closed Access
Orbital-Overlap Control in the Solid-State Reactivity of β-Azido-Propiophenones: Selective Formation of<i>cis</i>-Azo-Dimers
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Citations
26
References
2008
Year
Solid-state ReactivityEngineeringTheoretical Inorganic ChemistryMolecular BiologyOrganic ChemistryChemistryPhotoredox ProcessOrganometallic CatalysisPhotochemistryAdjacent NitrenesMechanistic PhotochemistryMolecular Orbital AlignmentPhysical ChemistryOrbital-overlap ControlSupramolecular ChemistrySupramolecular PhotochemistryPhotochromismCrystallographyBiomolecular EngineeringNatural SciencesSelective FormationSolid-state Photolysis
Solid-state photolysis of 1a,b yields selectively cis-3a,b. X-ray analysis of 1a,b reveals the molecules adopt an extended structure and as such the crystal packing arrangement consists of planar, pi-stacked molecules. The shortest intermolecular distance between adjacent N-atoms is approximately 3.76 A and would lead to formation of trans-3a,b, whereas cis-3a,b is formed by dimerization between N-atoms that are approximately 3.9 A apart. We propose that the molecular orbital alignment of the adjacent nitrenes controls the solid-state reactivity.
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