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Direct electron transfer between tyrosinase and multi-walled carbon nanotubes for bioelectrocatalytic oxygen reduction.,
, Electrochem. commun., Volume 20, p.19–22, (2012)
Polypyrrolic Bipyridine Bis(phenantrolinequinone) Ru(II) Complex/Carbon Nanotube Composites for NAD-Dependent Enzyme Immobilization and Wiring.,
, Anal. Chem. (Washington, DC, United States), Volume 86, Number 9, p.4409–4415, (2014)
Non-covalent functionalization of carbon nanotubes with boronic acids for the wiring of glycosylated redox enzymes in oxygen-reducing biocathodes.,
, J. Mater. Chem. B Mater. Biol. Med., Volume 2, Number 16, p.2228–2232, (2014)
High power enzymatic biofuel cell based on naphthoquinone-mediated oxidation of glucose by glucose oxidase in a carbon nanotube 3D matrix.,
, Phys. Chem. Chem. Phys., Volume 15, Number 14, p.4892–4896, (2013)
Biomimetic versus enzymatic high-potential electrocatalytic reduction of hydrogen peroxide on a functionalized carbon nanotube electrode.,
, Chem. Sci., Volume 6, Number 9, p.5139–5143, (2015)
One-year stability for a glucose/oxygen biofuel cell combined with pH reactivation of the laccase/carbon nanotube biocathode.,
, Bioelectrochemistry, Volume 106, Number Part{\_}A, p.73–76, (2015)
Deciphering Reversible Homogeneous Catalysis of the Electrochemical H2 Evolution and Oxidation: Role of Proton Relays and Local Concentration Effects,
, Angewandte Chemie International Edition, Volume n/a, p.e202302779, (2023)