Hydrogenase-based nanomaterials as anode electrode catalyst in polymer electrolyte fuel cells
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Condensed Matter Physics,General Chemistry
Reference22 articles.
1. Surface science studies of model fuel cell electrocatalysts
2. Hydrogenase sophistication
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4. Crystallographic and FTIR Spectroscopic Evidence of Changes in Fe Coordination Upon Reduction of the Active Site of the Fe-Only Hydrogenase from Desulfovibrio desulfuricans
5. A Capable Bridging Ligand for Fe-Only Hydrogenase: Density Functional Calculations of a Low-Energy Route for Heterolytic Cleavage and Formation of Dihydrogen
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1. Can nanomaterials be a solution for application on alternative vehicles? – A review paper on life cycle assessment and risk analysis;International Journal of Hydrogen Energy;2015-04
2. Activation and Inactivation of Hydrogenase Function and the Catalytic Cycle: Spectroelectrochemical Studies;Chemical Reviews;2007-08-23
3. A study on the stability of O2 on oxometalloporphyrins by the first principles calculations;The Journal of Chemical Physics;2007-05-21
4. Theoretical Studies of [FeFe]-Hydrogenase: Infrared Fingerprints of the Dithiol-Bridging Ligand in the Active Site;Inorganic Chemistry;2007-01-26
5. A Density Functional Analysis on the Photoelectronic Spectra of Fe-Only Hydrogenase Analogues;e-Journal of Surface Science and Nanotechnology;2007
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