International audienceAbstract A new family of triaminocyclopentadienyl iron(II) tricarbonyl complexes has been synthesized, fully characterized and applied in hydrogenation transfer. These complexes are the first Earth‐abundant metal complexes able to catalyze reductive alkylation of primary and secondary aliphatic amines with 2‐diarylphosphinobenzaldehyde derivatives at room temperature. These non‐pincer type cyclopentadienyl iron(II) complexes demonstrate not only better efficiency than known cyclopentadienone iron carbonyl complexes but also high functionality tolerance. The resulting aminophosphines provide a straightforward and rapid access to potential P−N ligands
The application of a series of (cyclopentadienone)iron tricarbonyl complexes to “borrowing hydrogen”...
A series of piano-stool iron(II) complexes bearing bidentate cyclopentadienyl-functionalized N-heter...
Iron-catalyzed hydrogenation has drawn much attention, yet the scope and chemoselectivity of iron ca...
International audienceA transition-metal frustrated Lewis pair approach has been envisaged to enhanc...
A transition-metal frustrated Lewis pair approach has been envisaged to enhance the catalytic activi...
A transition-metal frustrated Lewis pair approach has been envisaged to enhance the catalytic activi...
A series of new iron complexes featuring multi-dentate ligands containing phosphorus and nitrogen d...
A series of new iron complexes featuring multi-dentate ligands containing phosphorus and nitrogen d...
Based on a "transition metal frustrated Lewis pair" approach, a cyclopentadienone iron tricarbonyl c...
International audienceThe development of efficient and low-cost catalytic systems is important for t...
International audienceThe development of efficient and low-cost catalytic systems is important for t...
This is the accepted article.The synthesis and use of the first examples of unsymmetrical, mixed pho...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
The application of a series of (cyclopentadienone)iron tricarbonyl complexes to “borrowing hydrogen”...
A series of piano-stool iron(II) complexes bearing bidentate cyclopentadienyl-functionalized N-heter...
Iron-catalyzed hydrogenation has drawn much attention, yet the scope and chemoselectivity of iron ca...
International audienceA transition-metal frustrated Lewis pair approach has been envisaged to enhanc...
A transition-metal frustrated Lewis pair approach has been envisaged to enhance the catalytic activi...
A transition-metal frustrated Lewis pair approach has been envisaged to enhance the catalytic activi...
A series of new iron complexes featuring multi-dentate ligands containing phosphorus and nitrogen d...
A series of new iron complexes featuring multi-dentate ligands containing phosphorus and nitrogen d...
Based on a "transition metal frustrated Lewis pair" approach, a cyclopentadienone iron tricarbonyl c...
International audienceThe development of efficient and low-cost catalytic systems is important for t...
International audienceThe development of efficient and low-cost catalytic systems is important for t...
This is the accepted article.The synthesis and use of the first examples of unsymmetrical, mixed pho...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
Reductive amination under hydrogen pressure is a valuable process in organic chemistry to access ami...
The application of a series of (cyclopentadienone)iron tricarbonyl complexes to “borrowing hydrogen”...
A series of piano-stool iron(II) complexes bearing bidentate cyclopentadienyl-functionalized N-heter...
Iron-catalyzed hydrogenation has drawn much attention, yet the scope and chemoselectivity of iron ca...