International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling of indoles and allyl acetates/alcohols. The reaction tolerates many functional groups and selectively affords the branched C3-allylated products from both α- and γ-substituted allyl substrates. It takes the advantage of the hemilabile character of the P∧N ligand. The C(sp2)-C(sp3) coupling operates via a Au(I)/Au(III) redox cycle and involves a dicationic π-allyl Au(III) complex as a key intermediate. In this case, the allyl moiety adopts an asymmetric σ + π-coordination mode, as substantiated by NMR spectroscopy and density functional theory (DFT) calculations
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceThe ability of the hemilabile (P,N) MeDalphos ligand to trigger oxidative addi...
Gas-phase ion–molecule reaction experiments, theoretical kinetic modeling, and computational chemist...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceThe possibility for AuIII σ-cyclopropyl complexes to undergo ring-opening and ...
International audienceThe possibility for AuIII σ-cyclopropyl complexes to undergo ring-opening and ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
International audienceCycling between Au(I) and Au(III) is challenging so that gold-catalyzed cross-...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceCycling between Au(I) and Au(III) is challenging so that gold-catalyzed cross-...
International audienceThe ability of the hemilabile (P,N) MeDalphos ligand to trigger oxidative addi...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceThe ability of the hemilabile (P,N) MeDalphos ligand to trigger oxidative addi...
Gas-phase ion–molecule reaction experiments, theoretical kinetic modeling, and computational chemist...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceA (MeDalphos)AuCl complex was found to efficiently catalyze the cross-coupling...
International audienceThe possibility for AuIII σ-cyclopropyl complexes to undergo ring-opening and ...
International audienceThe possibility for AuIII σ-cyclopropyl complexes to undergo ring-opening and ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
A new ruthenium-catalyzed, heteroatom-directed strategy for C–H allylation of indoles is described. ...
International audienceCycling between Au(I) and Au(III) is challenging so that gold-catalyzed cross-...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceCycling between Au(I) and Au(III) is challenging so that gold-catalyzed cross-...
International audienceThe ability of the hemilabile (P,N) MeDalphos ligand to trigger oxidative addi...
International audienceπ-Allyl complexes play a prominent role in organometallic chemistry and have a...
International audienceThe ability of the hemilabile (P,N) MeDalphos ligand to trigger oxidative addi...
Gas-phase ion–molecule reaction experiments, theoretical kinetic modeling, and computational chemist...