Direct conversion of dinitrogen (N2) into organic compounds, not through ammonia (NH3), is of great significance both fundamentally and practically. Here we report a highly efficient scandium-mediated synthetic cycle affording hydrazine derivatives (RMeN–NMeR′) directly from N2 and carbon-based electrophiles. The cycle includes three main steps: (i) reduction of a halogen-bridged discandium complex under N2 leading to a (N2)3–-bridged discandium complex via a (N2)2– intermediate; (ii) treatment of the (N2)3– complex with methyl triflate (MeOTf), affording a (N2Me2)2–-bridged discandium complex; and (iii) further reaction of the (N2Me2)2– complex with the carbon-based electrophile, producing the hydrazine derivative and regenerating the hali...
A series of trinuclear and dinuclear Cr(I)–N2 complexes bearing cyclopentadienyl-phosphine ligands ...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
International audienceThe bis(nitrile) compound [Mo2Cp2(μ-SMe)3 (MeCN)2](BF4) (1) (Cp = C5H5) reacte...
Direct conversion of dinitrogen (N2) into organic compounds, not through ammonia (NH3), is of great ...
Direct conversion of dinitrogen (N-2) into organic compounds, not through ammonia (NH3), is of great...
The direct use of dinitrogen (N2) as a building block for the synthesis of NN-containing organic com...
A family of zirconocene and hafnocene compounds bearing side-on bound dinitrogen ligands were prepar...
A new, extensive series of mono-dinitrogen complexes was reported. These were the first reported mon...
This review presents a comprehensive overview of the reactions of N-2 within the coordination sphere...
Reactions of trans- Mo(N(,2))(,2)(triphos)(PPh(,3)) , 1, where triphos = Ph(CH(,2)CH(,2)PPh(,2))(,2)...
Contains fulltext : 26292.PDF (publisher's version ) (Open Access
The purpose of our program is to explore fundamental chemistry relevant to the discovery of energy e...
The formation of hydrazinium salts by N−N bond formation has typically involved the use of hazardous...
We report a rare example of a Cr–N<sub>2</sub> complex supported by a 16-membered phosphorus macrocy...
International audienceThe reduction of diazene complexes [Mo2Cp2(μ-SMe)3(μ- η2-H-N=N-R)]+(R=Ph (3a);...
A series of trinuclear and dinuclear Cr(I)–N2 complexes bearing cyclopentadienyl-phosphine ligands ...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
International audienceThe bis(nitrile) compound [Mo2Cp2(μ-SMe)3 (MeCN)2](BF4) (1) (Cp = C5H5) reacte...
Direct conversion of dinitrogen (N2) into organic compounds, not through ammonia (NH3), is of great ...
Direct conversion of dinitrogen (N-2) into organic compounds, not through ammonia (NH3), is of great...
The direct use of dinitrogen (N2) as a building block for the synthesis of NN-containing organic com...
A family of zirconocene and hafnocene compounds bearing side-on bound dinitrogen ligands were prepar...
A new, extensive series of mono-dinitrogen complexes was reported. These were the first reported mon...
This review presents a comprehensive overview of the reactions of N-2 within the coordination sphere...
Reactions of trans- Mo(N(,2))(,2)(triphos)(PPh(,3)) , 1, where triphos = Ph(CH(,2)CH(,2)PPh(,2))(,2)...
Contains fulltext : 26292.PDF (publisher's version ) (Open Access
The purpose of our program is to explore fundamental chemistry relevant to the discovery of energy e...
The formation of hydrazinium salts by N−N bond formation has typically involved the use of hazardous...
We report a rare example of a Cr–N<sub>2</sub> complex supported by a 16-membered phosphorus macrocy...
International audienceThe reduction of diazene complexes [Mo2Cp2(μ-SMe)3(μ- η2-H-N=N-R)]+(R=Ph (3a);...
A series of trinuclear and dinuclear Cr(I)–N2 complexes bearing cyclopentadienyl-phosphine ligands ...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
International audienceThe bis(nitrile) compound [Mo2Cp2(μ-SMe)3 (MeCN)2](BF4) (1) (Cp = C5H5) reacte...