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Gold(I) Complexes Nuclearity in Constrained Ferrocenyl Diphosphines: Dramatic Effect in Gold‐Catalyzed Enyne Cycloisomerization
Authors:Tuan‐Anh Nguyen  Julien Roger  Houssein Nasrallah  Vincent Rampazzi  Sophie Fournier  Hlne Cattey  E Daiann Sosa Carrizo  Paul Fleurat‐Lessard  Charles H Devillers  Nadine Pirio  Dominique Lucas  Jean‐Cyrille Hierso
Institution:Tuan‐Anh Nguyen,Julien Roger,Houssein Nasrallah,Vincent Rampazzi,Sophie Fournier,Hélène Cattey,E. Daiann Sosa Carrizo,Paul Fleurat‐Lessard,Charles H. Devillers,Nadine Pirio,Dominique Lucas,Jean‐Cyrille Hierso
Abstract:Di‐tert‐butylated‐bis(phosphino)ferrocene ligands bearing phosphino substituents R (R=phenyl, cyclohexyl, iso‐propyl, mesityl, or furyl) allow tuning the selective formation of Au(I) halide complexes. Thus, dinuclear linear two‐coordinate, but also rare mononuclear trigonal three‐coordinate and tetrahedral four‐coordinate complexes were formed upon tuning of the conditions. Both Au(I) chloride and rarer Au(I) iodide complexes were synthesized, and their X‐ray diffraction analysis are reported. The significance of the control of structure and nuclearity in Au(I) complexes is further illustrated herein by its strong effect on the efficiency and selectivity of gold‐catalysed cycloisomerization. Cationic linear digold(I) bis(dicyclohexylphosphino) ferrocenes outperform other catalysts in the demanding regioselective cycloisomerization of enyne sulphonamides into cyclohexadienes. Conversely, tetrahedral and trigonal cationic monogold(I) complexes were found incompetent for enyne cycloaddition. We used the two‐coordinate linear electron‐rich Au(I) complex 2 b (R=Cy) to extend the scope of selective intramolecular cycloaddition of different 1,6‐enyne sulfonylamines with high activity and excellent selectivity to the endo cyclohexadiene products.
Keywords:Functionalized ferrocenes  digold complexes  halides  trigonal gold(I)  enyne cyclization
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