Carbon dioxide as a protecting group: highly efficient and selective catalytic access to cyclic cis-diol scaffolds

Angew Chem Int Ed Engl. 2014 Sep 22;53(39):10416-9. doi: 10.1002/anie.201406645. Epub 2014 Aug 11.

Abstract

The efficient and highly selective formation of a wide range of (hetero)cyclic cis-diol scaffolds using aminotriphenolate-based metal catalysts is reported. The key intermediates are cyclic carbonates, which are obtained in high yield and with high levels of diastereo- and chemoselectivity from the parent oxirane precursors and carbon dioxide. Deprotection of the carbonate structures affords synthetically useful cis-diol scaffolds with different ring sizes that incorporate various functional groups. This atom-efficient method allows the simple construction of diol synthons using inexpensive and accessible precursors and green metal catalysts and showcases the use of CO2 as a temporary protecting group.

Keywords: aluminum; carbonates; epoxides; homogeneous catalysis; syn diols.