Oxidative addition of aryl halides to Ni(0) is a ubiquitous elementary step in cross-coupling and related reactions, usually producing a square-planar Ni(II)–aryl intermediate. Here we show that a triphosphine ligand supports oxidative addition at a tris-ligated Ni(0) center to cleanly form stable five-coordinate Ni(II)–aryl compounds. Kinetic and computational studies support a concerted, two-electron mechanism rather than radical halogen abstraction. These results support the idea that oxidative addition to triphosphine Ni(0) species may be more generally involved in Ni/phosphine catalytic systems
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Detailed kinetic studies of the reaction of a model Ni-0 complex with a range of aryl electrophiles ...
Oxidative addition represents a critical elementary step in myriad catalytic transformations. Here, ...
Oxidative addition of aryl halides to Ni(0) is a ubiquitous elementary step in cross-coupling and re...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Detailed kinetic studies of the reaction of a model Ni-0 complex with a range of aryl electrophiles ...
Oxidative addition represents a critical elementary step in myriad catalytic transformations. Here, ...
Oxidative addition of aryl halides to Ni(0) is a ubiquitous elementary step in cross-coupling and re...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
The oxidative addition of aryl halides is a common entry point in catalytic cycles for cross-couplin...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Density functional theory (DFT) calculations have been used to study the oxidative addition of aryl ...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Reactions of the nickel(0) compound NiL4 (L = PPh3) with alkyl halides RX involve initial inner-sphe...
Detailed kinetic studies of the reaction of a model Ni-0 complex with a range of aryl electrophiles ...
Oxidative addition represents a critical elementary step in myriad catalytic transformations. Here, ...