4.8 Article

Digging the Sigma-Hole of Organoantimony Lewis Acids by Oxidation

Journal

ANGEWANDTE CHEMIE-INTERNATIONAL EDITION
Volume 57, Issue 42, Pages 13868-13872

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/anie.201808551

Keywords

antimony; Lewis acids; molecular recognition; sigma-hole; transfer hydrogenation

Funding

  1. American Chemical Society Petroleum Research Fund [56871-ND3]
  2. Welch Foundation [A-1423]
  3. Texas AM University

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The development of group 15 Lewis acids is an area of active investigation that has led to numerous advances in anion sensing and catalysis. While phosphorus has drawn considerable attention, emerging research shows that organoantimony(III) reagents may also act as potent Lewis acids. Comparison of the properties of SbPh3, Sb(C6F5)(3), and SbAr3F with those of their tetrachlorocatecholate analogues SbPh(3)Cat, Sb(C6F5)(3)Cat, and SbAr(3)(F)Cat (Cat = o-O2C6Cl4, Ar-F = 3,5-(CF3)(2)C6H3) demonstrates that the Lewis acidity of electron deficient organoantimony(III) reagents can be readily enhanced by oxidation to the + V state-as verified by binding studies, organic reaction catalysis, and computational studies. The results are rationalized by explaining that oxidation of the antimony center leads to a lowering of the accepting sigma* orbital and a deeper carving of the associated sigma-hole.

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