Role of cations and confinement in asymmetric photochemistry: enantio-and diastereo-selective photocyclization of tropolone derivatives within zeolites

Joy, Abraham ; Kaanumalle, Lakshmi S. ; Ramamurthy, V. (2005) Role of cations and confinement in asymmetric photochemistry: enantio-and diastereo-selective photocyclization of tropolone derivatives within zeolites Organic & Biomolecular Chemistry, 3 (16). pp. 3045-3053. ISSN 1477-0520

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Official URL: http://xlink.rsc.org/?doi=b504865f

Related URL: http://dx.doi.org/10.1039/B504865F

Abstract

Asymmetric induction in photochemical reactions has been explored using the photochemistry of tropolones as a model. Three approaches have been examined: chiral inductor, chiral auxiliary and [chiral inductor + chiral auxiliary]. All three methods gave excellent asymmetric induction in zeolite and very little or zero induction in solution. Results presented on tropolones clearly illustrate the remarkable influence that a confined space studded with cations can have on asymmetric induction. Tropolone derivatives, upon irradiation undergo 4π-electron electrocyclization to yield a bicyclic product and a rearranged product. Enantiomeric excess up to 68% has been achieved in the cyclized product. In systems where a chiral inductor has been covalently linked, diastereomeric excess as high as 88% has been achieved within a zeolite while the same system in solution gave 10%.

Item Type:Article
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ID Code:89989
Deposited On:04 May 2012 05:21
Last Modified:04 May 2012 05:21

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