Iron diazenido species (Fe(NNH)) have been proposed as the earliest intermediates of catalytic N2-to-NH3 conversion (N2RR) mediated by synthetic iron complexes and relatedly as intermediates of N2RR by nitrogenase enzymes. However, direct identification of such iron species, either during or independent of catalysis, has proven challenging owing to their high degree of instability. The isolation of more stable silylated diazenido analogues, Fe(NNSiR3), and also of further downstream intermediates (e.g., Fe(NNH2)), nonetheless points to Fe(NNH) as the key first intermediate of protonation in synthetic systems. Herein we show that low-temperature protonation of a terminally bound Fe-N2– species, supported by a bulky trisphosphinoborane li...
In part as an effort to probe the viability of a single iron site hypothesis for the binding and con...
The nitrogenase active-site cofactor must accumulate 4e-/4H+ (E4(4H) state) before N2 can bind and b...
The role of Fe in biological and industrial N<sub>2</sub> fixation has inspired the intense study of...
Iron diazenido species (Fe(NNH)) have been proposed as the earliest intermediates of catalytic N2-t...
Iron diazenido species (Fe(NNH)) have been proposed as the earliest intermediates of catalytic N_2-t...
Terminal iron nitrides (FeN) have been proposed as intermediates of (bio)catalytic nitrogen fixati...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
Terminal iron nitrides (Fe≡N) have been proposed as intermediates of (bio)catalytic nitrogen fixatio...
The ability of certain transition metals to mediate the reduction of N<sub>2</sub> to NH<sub>3</sub>...
Biological N<sub>2</sub> fixation to NH<sub>3</sub> may proceed at one or more Fe sites in the activ...
Nitrogen redn. to NH_3 is a requisite transformation for life and new technologies for NH synthesis ...
Despite their proposed accumulation at the Fe sites of the FeMo-cofactor of MoFe-nitrogenase, the pr...
The activation of Fe-coordinated N2 via the formal addition of hydrogen atom equivalents is explored...
Mitigating the hydrogen evolution (HER) is an outstanding challenge in small molecule reduction cata...
Nitrogenase reduces dinitrogen (N2) by six electrons and six protons at an active-site metallocluste...
In part as an effort to probe the viability of a single iron site hypothesis for the binding and con...
The nitrogenase active-site cofactor must accumulate 4e-/4H+ (E4(4H) state) before N2 can bind and b...
The role of Fe in biological and industrial N<sub>2</sub> fixation has inspired the intense study of...
Iron diazenido species (Fe(NNH)) have been proposed as the earliest intermediates of catalytic N2-t...
Iron diazenido species (Fe(NNH)) have been proposed as the earliest intermediates of catalytic N_2-t...
Terminal iron nitrides (FeN) have been proposed as intermediates of (bio)catalytic nitrogen fixati...
Biological N_2 fixation to NH_3 may proceed at one or more Fe sites in the active-site cofactors of ...
Terminal iron nitrides (Fe≡N) have been proposed as intermediates of (bio)catalytic nitrogen fixatio...
The ability of certain transition metals to mediate the reduction of N<sub>2</sub> to NH<sub>3</sub>...
Biological N<sub>2</sub> fixation to NH<sub>3</sub> may proceed at one or more Fe sites in the activ...
Nitrogen redn. to NH_3 is a requisite transformation for life and new technologies for NH synthesis ...
Despite their proposed accumulation at the Fe sites of the FeMo-cofactor of MoFe-nitrogenase, the pr...
The activation of Fe-coordinated N2 via the formal addition of hydrogen atom equivalents is explored...
Mitigating the hydrogen evolution (HER) is an outstanding challenge in small molecule reduction cata...
Nitrogenase reduces dinitrogen (N2) by six electrons and six protons at an active-site metallocluste...
In part as an effort to probe the viability of a single iron site hypothesis for the binding and con...
The nitrogenase active-site cofactor must accumulate 4e-/4H+ (E4(4H) state) before N2 can bind and b...
The role of Fe in biological and industrial N<sub>2</sub> fixation has inspired the intense study of...