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Molecular Electrochemical Reductive Splitting of Dinitrogen with a Molybdenum Complex.


ABSTRACT: Nitrogen reduction under mild conditions (room T and atmospheric P), using a non-fossil source of hydrogen remains a challenge. Molecular metal complexes, notably Mo based, have recently been shown to be active for such nitrogen fixation. We report electrochemical N2 splitting with a MoIII triphosphino complex [(PPP)MoI3 ], at room temperature and a moderately negative potential. A MoIV nitride species was generated, which is confirmed by electrochemistry and NMR studies. The reaction goes through two successive one electron reductions of the starting Mo species, coordination of a N2 molecule, and further splitting to a MoIV nitride complex. Preliminary DFT studies support the formation of a bridging MoI N2 MoI dinitrogen dimer evolving to the Mo nitride via a low energy transition state. This example joins a short list of molecular complexes for N2 electrochemical reductive cleavage. It opens a door to electrochemical proton-coupled electron transfer (PCET) conversion studies of N2 to NH3 .

SUBMITTER: Merakeb L 

PROVIDER: S-EPMC9804441 | biostudies-literature | 2022 Oct

REPOSITORIES: biostudies-literature

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Molecular Electrochemical Reductive Splitting of Dinitrogen with a Molybdenum Complex.

Merakeb Lydia L   Bennaamane Soukaina S   De Freitas Jérémy J   Clot Eric E   Mézailles Nicolas N   Robert Marc M  

Angewandte Chemie (International ed. in English) 20220825 40


Nitrogen reduction under mild conditions (room T and atmospheric P), using a non-fossil source of hydrogen remains a challenge. Molecular metal complexes, notably Mo based, have recently been shown to be active for such nitrogen fixation. We report electrochemical N<sub>2</sub> splitting with a Mo<sup>III</sup> triphosphino complex [(PPP)MoI<sub>3</sub> ], at room temperature and a moderately negative potential. A Mo<sup>IV</sup> nitride species was generated, which is confirmed by electrochemis  ...[more]

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