A new FeL/Fe2L2 manifold, with HL = 2-({[di(2-pyridyl) methyl]( methyl) amino} methyl) phenol, was prepared in gram scale (> 50% yield) and characterized in solution and solid state. The monomer/dimer interconversion is controlled in aqueous phase, upon varying the pH conditions. The electrocatalytic hydrogen evolution reaction (HER) occurs through the FeL monomer with added trifluoroacetic acid (TFA) and through the Fe2L2 mu m-oxo dimer in acetate buffer (pH 4.9), with an overpotential of about 1 V and faradaic yield up to 75 %. The resulting icat/ip values in the range 15-28 are among the highest reported for Fe-based electrocatalysts (icat is the catalytic current, whereas i(p) is the current of an Fe-based redox event).

Hydrogen Evolution by Fe-III Molecular Electrocatalysts Interconverting between Mono and Di-Nuclear Structures in Aqueous Phase

Bonchio Marcella
2017

Abstract

A new FeL/Fe2L2 manifold, with HL = 2-({[di(2-pyridyl) methyl]( methyl) amino} methyl) phenol, was prepared in gram scale (> 50% yield) and characterized in solution and solid state. The monomer/dimer interconversion is controlled in aqueous phase, upon varying the pH conditions. The electrocatalytic hydrogen evolution reaction (HER) occurs through the FeL monomer with added trifluoroacetic acid (TFA) and through the Fe2L2 mu m-oxo dimer in acetate buffer (pH 4.9), with an overpotential of about 1 V and faradaic yield up to 75 %. The resulting icat/ip values in the range 15-28 are among the highest reported for Fe-based electrocatalysts (icat is the catalytic current, whereas i(p) is the current of an Fe-based redox event).
2017
electrocatalysis
hydrogen evolution
iro complexes
polypyridine ligands
water reduction
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/359790
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