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Synthetic use of the primary kinetic isotope effect in hydrogen atom transfer 2: generation of captodatively stabilised radicals
Mark E. Wood,Sabine Bissiriou,Christopher Lowe,Kim M. Windeatt
Organic & Biomolecular Chemistry Pub Date : 03/05/2013 00:00:00 , DOI:10.1039/C3OB40275D
Abstract

Using C-3 di-deuterated morpholin-2-ones bearing N-2-iodobenzyl and N-3-bromobut-3-enyl radical generating groups, only products derived from the more stabilised C-3, rather than the less stabilised C-5 translocated radicals, were formed after intramolecular 1,5-hydrogen atom transfer, suggesting that any kinetic isotope effect present was not sufficient to offset captodative stabilisation.

Graphical abstract: Synthetic use of the primary kinetic isotope effect in hydrogen atom transfer 2: generation of captodatively stabilised radicals
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