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January 19, 2008Journal of the American Chemical Society312 citations

FeFe-Hydrogenase-Catalyzed H 2 Production in a Photoelectrochemical Biofuel Cell

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MHMichael HambourgerMGMiguel GervaldoDSDraženka Svedružić

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Abstract

The Clostridium acetobutylicum FeFe-hydrogenase HydA has been investigated as a hydrogen production catalyst in a photoelectrochemical biofuel cell. Hydrogenase was adsorbed to pyrolytic graphite edge and carbon felt electrodes. Cyclic voltammograms of the immobilized hydrogenase films reveal cathodic proton reduction and anodic hydrogen oxidation, with a catalytic bias toward hydrogen evolution. When corrected for the electrochemically active surface area, the cathodic current densities are similar for both carbon electrodes, and approximately 40% of those obtained with a platinum electrode. The high surface area carbon felt/hydrogenase electrode was subsequently used as the cathode in a photoelectrochemical biofuel cell. Under illumination, this device is able to oxidize a biofuel substrate and reduce protons to hydrogen. Similar photocurrents and hydrogen production rates were observed in the photoelectrochemical biofuel cell using either hydrogenase or platinum cathodes.

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Cite This Study

Hambourger et al. (2008) studied this question.

synapsesocial.com/papers/6a08c5f785b227e46401e71fhttps://doi.org/10.1021/ja077691k
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