A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl bromides is presented. Crystallographic studies and density functional theory (DFT) calculations suggest that the challenging step of this transformation is C–F reductive elimination of five-membered heteroaryl fluorides from Pd(II) complexes. On the basis of these studies, we have found that various heteroaryl bromides bearing phenyl groups in the ortho position can be effectively fluorinated under catalytic conditions. Highly activated 2-bromoazoles, such as 8-bromocaffeine, are also viable substrates for this reaction
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
ABSTRACT: On the basis of mechanism-driven reaction design, a Pd-catalyzed nucleophilic fluorination...
ABSTRACT: We report the arylation and heteroarylation of α,α-difluoro-α-(trimethylsilyl)acetamides w...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
Thesis: Ph. D. in Organic Chemistry, Massachusetts Institute of Technology, Department of Chemistry,...
A new biaryl monophosphine ligand (AlPhos, <b>L1</b>) allows for the room-temperature Pd-catalyzed f...
A new biaryl monophosphine ligand (AlPhos, <b>L1</b>) allows for the room-temperature Pd-catalyzed f...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
ABSTRACT: On the basis of mechanism-driven reaction design, a Pd-catalyzed nucleophilic fluorination...
ABSTRACT: We report the arylation and heteroarylation of α,α-difluoro-α-(trimethylsilyl)acetamides w...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
A thorough investigation of the challenging Pd-catalyzed fluorination of five-membered heteroaryl br...
Thesis: Ph. D. in Organic Chemistry, Massachusetts Institute of Technology, Department of Chemistry,...
A new biaryl monophosphine ligand (AlPhos, <b>L1</b>) allows for the room-temperature Pd-catalyzed f...
A new biaryl monophosphine ligand (AlPhos, <b>L1</b>) allows for the room-temperature Pd-catalyzed f...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
A new biaryl monophosphine ligand (AlPhos, L1) allows for the room-temperature Pd-catalyzed fluorina...
ABSTRACT: On the basis of mechanism-driven reaction design, a Pd-catalyzed nucleophilic fluorination...
ABSTRACT: We report the arylation and heteroarylation of α,α-difluoro-α-(trimethylsilyl)acetamides w...