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Article Dans Une Revue Journal of Materials Chemistry A Année : 2016

An electrochemically functional layer of hydrogenase extract on an electrode of large and tunable specific surface area

Résumé

Electrode supports are generated by electrospinning of polyacrylonitrile fibers and subsequent coating of a thin electrically conductive TiO2 layer by atomic layer deposition. The supports are then functionalized with a [NiFe]-hydrogenase-containing membrane fraction from Escherichia coli and are characterized structurally and electrochemically. The hydrogenase suspension generates a micron-thick organic film around the fiber mat, which exhibits electrocatalytic activity for hydrogen evolution. Furthermore, the electrode geometric surface area is varied systematically via the electrospinning procedure, which reduces the charge transfer resistance and increases the hydrogen evolution current density to >500 μA cm−2 at 0.3 V overpotential.

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Chimie
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Origine : Publication financée par une institution

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hal-01688153 , version 1 (07-07-2021)

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Stefanie Schlicht, Loïc Assaud, Moritz Hansen, Markus Licklederer, Mikhael Bechelany, et al.. An electrochemically functional layer of hydrogenase extract on an electrode of large and tunable specific surface area. Journal of Materials Chemistry A, 2016, 4 (17), pp.6487 - 6494. ⟨10.1039/C6TA00392C⟩. ⟨hal-01688153⟩
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