Acid Activation in Phenyliodine Dicarboxylates: Direct Observation, Structures, and Implications

Autor/a

Izquierdo, Susana

Essafi, Stéphanie

del Rosal, Iker

Vidossich, Pietro

Pleixats, Roser

Vallribera, Adelina

Ujaque,Gregori

Lledós, Agustí

Shafir, Alexandr

Fecha de publicación

2016



Resumen

<p> <span lang="EN-US" style="margin: 0px; color: rgb(0, 0, 170); font-family: &quot;Cambria&quot;,serif; font-size: 12pt;">The use of the hypervalent iodine reagents in oxidative processes has become a staple in modern organic synthesis. Frequently, the reactivity of &lambda;<sup>3</sup> iodanes is further enhanced by acids (Lewis or Br&oslash;nsted). The origin of such activation, however, has remained elusive. Here, we use the common combination of PhI(OAc)<sub>2</sub> with BF<sub>3</sub>&middot;Et<sub>2</sub>O as a model to fully explore this activation phenomenon. In addition to the spectroscopic assessment of the dynamic acid&ndash;base interaction, for the first time the putative PIDA&middot;BF<sub>3</sub> complex has been isolated and its structure determined by X-ray diffraction. Consequences of such activation are discussed from a structural and electronic (DFT) points of views, including the origins of the enhanced reactivity</span>.</p>

Tipo de documento

Artículo

Lengua

Inglés

Palabras clave

Hypervalent iodine

Publicado por

American Chemical Society

Es versión de

J. Am. Chem. Soc.

Número del acuerdo de la subvención

CTQ2013-46705-R

SEV-2013-0319

CTQ2014-54071-P

2014 SGR 1192

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