Polycationic Ligands in Gold Catalysis: Synthesis and Applications of Extremely π-Acidic Catalysts.

Very often ligands are anionic or neutral species. Cationic ones are rare, and, when used, the positively charged groups are normally appended to the periphery of the ligand. Here, we describe a dicationic phosphine with no spacer between the phosphorus atom and the two positively charged groups. Th...

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Detalles Bibliográficos
Publicado en:Journal of the American Chemical Society Vol. 135; no. 50; pp. 18815 - 18824
Autores principales: Carreras, Javier, Gopakumar, Gopinadhanpillai, Liangu Gu, Gimeno, Ana, Linowski, Pawel, Petuškova, Jekaterina, Thiel, Walter, Alcarazo, Manuel
Formato: Artículo
Publicado: American Chemical Society 12/18/2013
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Acceso en línea:Ver este registro en EBSCOhost
Descripción
Sumario:Very often ligands are anionic or neutral species. Cationic ones are rare, and, when used, the positively charged groups are normally appended to the periphery of the ligand. Here, we describe a dicationic phosphine with no spacer between the phosphorus atom and the two positively charged groups. This structural feature makes its donor ability poorer than that of phosphites and only comparable to extremely toxic or pyrophoric compounds such as PF or P(CF). By exploiting these properties, a new Au catalyst has been developed displaying a dramatically enhanced capacity to activate p-systems. This has been used to synthesize very sterically hindered and naturally occurring 4,5-disubstituted phenanthrenes. The present approach is expected to be applicable to the development and improvement of many other transition metal catalyzed transformations that benefit from extremely strong π-acceptor ligands. The mechanism of selected catalytic transformations has been explored by density functional calculations.