Molecular Catalysts with Diphosphine Ligands Containing Pendant Amines

Молекулярные катализаторы с дифосфиновыми лигандами, содержащими боковые аминогруппы
Eric S. Wiedner, Aaron M. Appel, Simone Raugei, Wendy J. Shaw, R. Morris Bullock
2022-05-31

Diphosphine ligandsHydrogen oxidation and productionMolecular electrocatalystsP2N2 ligandsPendant amines
Pendant amines play an invaluable role in chemical reactivity, especially for molecular catalysts based on earth-abundant metals. As inspired by [FeFe]-hydrogenases, which contain a pendant amine positioned for cooperative bifunctionality, synthetic catalysts have been developed to emulate this multifunctionality through incorporation of a pendant amine in the second coordination sphere. Cyclic diphosphine ligands containing two amines serve as the basis for a class of catalysts that have been extensively studied and used to demonstrate the impact of a pendant base. These 1,5-diaza-3,7-diphosphacyclooctanes, now often referred to as “P 2 N 2 ” ligands, have profound effects on the reactivity of many catalysts. The resulting [Ni(P R 2 N R′ 2 ) 2 ] 2+ complexes are electrocatalysts for both the oxidation and production of H 2 . Achieving the optimal benefit of the pendant amine requires that it has suitable basicity and is properly positioned relative to the metal center. In addition to the catalytic efficacy demonstrated with [Ni(P R 2 N R′ 2 ) 2 ] 2+ complexes for the oxidation and production of H 2, catalysts with diphosphine ligands containing pendant amines have also been demonstrated for several metals for many different reactions, both in solution and immobilized on surfaces. The impact of pendant amines in catalyst design continues to expand.
1
Bis(P2N2) nickel complexes, [Ni(PR2NR′2)2]2+, catalyze both hydrogen oxidation and hydrogen production electrochemically.
2
Catalytic benefit depends on pendant-amine basicity and its geometric positioning relative to the metal center.
3
Cyclic P2N2 diphosphine ligands containing two pendant amines strongly alter catalyst reactivity and have become a widely studied platform.
4
Diphosphine ligands with pendant amines have enabled catalysts for diverse metals and reactions, including homogeneous and surface-immobilized systems.
5
Pendant amines enable cooperative bifunctionality in molecular catalysts by providing a reactive base in the second coordination sphere.

Molecular catalysts based on earth-abundant metals containing cyclic diphosphine ligands with pendant amines, especially [Ni(P R 2 N R′ 2 ) 2 ] 2+ complexes

The effects of pendant-amine basicity and positioning on catalyst reactivity and electrocatalytic H2 oxidation and production

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2022-05-31
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Authors
Eric S. Wiedner
Aaron M. Appel
Simone Raugei
Wendy J. Shaw
R. Morris Bullock
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