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Published on: December 29, 2012
(Poly)cationic λ3-Iodane Mediated Oxidative Ring Expansion of Secondary Alcohols
Jennifer C Walters1, Anthony F Tierno1, Aimee H Dubin1
1Department of Chemistry, Temple University, 1901 N. 13 St. Philadelphia, PA 19122.
Abstract:
Herein, we report a simplified approach to the synthesis of medium-ring ethers through the electrophilic activation of secondary alcohols with (poly)cationic λ3-iodanes (N-HVI). Excellent levels of selectivity are achieved for C-O bond migration over established α-elimination pathways, enabled by the unique reactivity of a novel 2-OMe-pyridine-ligated N-HVI. The resulting HFIP-acetals are readily derivatized with a range of nucleophiles, providing a versatile functional handle for subsequent manipulations. The utility of this methodology for late-stage natural product derivatization was also demonstrated, providing a new tool for diversity-oriented synthesis and complexity-to-diversity (CTD) efforts. Preliminary mechanistic investigations reveal a strong effect of alcohol conformation on reactive pathway, thus providing a predictive power in the application of this approach to complex molecule synthesis.
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