107 resultats trouvés
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Carbon science perspective in 2020: Current research and future challenges,
, Carbon, Volume 161, (2020)
Diazonium electrografting vs. physical adsorption of Azure A at carbon nanotubes for mediated glucose oxidation with FAD-GDH,
, ChemElectroChem, Volume 7, Issue 22, (2020)
Functionalization of contacted Carbon Nanotube Forests by dip coating for high performing bio-cathodes,
, ChemElectroChem, Volume 7, Issue 22, (2020)
Functionalized Tungsten disulfide nanotubes for Dopamine and Catechol detection in a Tyrosinase-based Amperometric Biosensor design,
, Journal of Materials Chemistry B, Volume 8, (2020)
Photoelectrochemically-assisted biofuel cell constructed by redox complex and g-C3N4 coated MWCNT bioanode,
, Biosensors & Bioelectronics, Volume 169, (2020)
Photoelectrochemically-assisted biofuel cell constructed by redox complex and g-C3N4 coated MWCNT bioanode,
, Biosensors and Bioelectronics, Volume 169, p.112601, (2020)
Voltammetric sensing of recombinant viral dengue virus 2 NS1 based on Au nanoparticle–decorated multiwalled carbon nanotube composites,
, Microchimica Acta, Volume 187, Issue 6, (2020)
Electrosynthesis of Pyrenediones on Carbon Nanotube Electrodes for Efficient Electron Transfer with FAD‐dependent Glucose Dehydrogenase in Biofuel Cell Anodes,
, ChemElectroChem, Volume 6, Issue 20, (2019)
Beyond the hype surrounding biofuel cells: What's the future of enzymatic fuel cells?,
, Current Opinion in Electrochemistry, Volume 12, (2018)
Buckypaper bioelectrodes: Emerging materials for implantable and wearable biofuel cells,
, Energy & Environmental Science, (2018)
Carbon nanotube-based flexible biocathode for enzymatic biofuel cells by spray coating,
, Journal of Power Sources, Volume 408, (2018)
Comparison of Commercial and Lab-Made MWCNT Buckypaper: Physicochemical Properties and Bioelectrocatalytic O2 Reduction,
, Electroanalysis, (2018)
Dawson-type polyoxometalate nanoclusters confined in a carbon nanotube matrix as efficient redox mediators for enzymatic glucose biofuel cell anodes and glucose biosensors,
, Biosens. Bioelectron., Volume 109, (2018)
Glucose oxidase bioanodes for glucose conversion and H2O2 production for horseradish peroxidase biocathodes in a flow through glucose biofuel cell design,
, Journal of Power Sources, Volume 392, (2018)
Impedimetric quantification of anti-dengue antibodies using functional carbon nanotube deposits validated with blood plasma assays,
, Electrochimica Acta, Volume 274, (2018)
Molecular design of glucose biofuel cell electrodes,
, Molecular Technology: Energy Innovation, Weinheim, Germany, (2018)
Molecular engineering of the bio/nano-interface for enzymatic electrocatalysis in fuel cells,
, Sustainable Energy & Fuels, Volume 2, Issue 12, (2018)
Towards eco-friendly power sources: In series connected glucose biofuel cells power a disposable ovulation test,
, Sensors and Actuators B: Chemical, Volume 277, (2018)
Assembly and Stacking of Flow-through Enzymatic Bioelectrodes for High Power Glucose Fuel Cells.,
, ACS Appl. Mater. Interfaces, Volume 9, Number 28, p.23836–23842, (2017)
Controlled carbon nanotube layers for impedimetric immunosensors: High performance label free detection and quantification of anti-cholera toxin antibody.,
, Biosens. Bioelectron., Volume 97, p.177–183, (2017)
Flotation assembly of large-area ultrathin MWCNT nanofilms for construction of bioelectrodes.,
, Nanomaterials, Volume 7, Number 10, p.342/1–342/11, (2017)
A High Power Buckypaper Biofuel Cell: Exploiting 1,10-Phenanthroline-5,6-dione with FAD-Dependent Dehydrogenase for Catalytically-Powerful Glucose Oxidation.,
, ACS Catal., Volume 7, Number 7, p.4408–4416, (2017)
Hydrazine Electrooxidation with PdNPs and Its Application for a Hybrid Self-Powered Sensor and N2H4 Decontamination.,
, J. Electrochem. Soc., Volume 164, Number 3, p.H3052–H3057, (2017)
Interprotein Electron Transfer between FeS-Protein Nanowires and Oxygen-Tolerant NiFe Hydrogenase.,
, Angew. Chemie, Int. Ed., Volume 56, Number 27, p.7774–7778, (2017)
Synergetic effects of combined nanomaterials for biosensing applications.,
, Sensors, Volume 17, Number 5, p.1010/1–1010/16, (2017)
A synthetic redox biofilm made from metalloprotein-prion domain chimera nanowires.,
, Nat. Chem., Volume 9, Number 2, p.157–163, (2017)
Tuning the redox potential of vitamin K3 derivatives by oxidative functionalization using a Ag(I)/GO catalyst.,
, Chem. Commun. (Cambridge, United Kingdom), Volume 53, Number 63, p.8890–8893, (2017)
Cubic PdNP-based air-breathing cathodes integrated in glucose hybrid biofuel cells.,
, Nanoscale, Volume 8, Number 19, p.10433–10440, (2016)
Diazonium Functionalisation of Carbon Nanotubes for Specific Orientation of Multicopper Oxidases: Controlling Electron Entry Points and Oxygen Diffusion to the Enzyme.,
, Chem. - A Eur. J., Volume 22, Number 30, p.10494–10500, (2016)
Direct Electron Transfer between a Site-Specific Pyrene-Modified Laccase and Carbon Nanotube/Gold Nanoparticle Supramolecular Assemblies for Bioelectrocatalytic Dioxygen Reduction.,
, ACS Catal., Volume 6, Number 3, p.1894–1900, (2016)
Electrocatalytic O2 Reduction at a Bio-inspired Mononuclear Copper Phenolato Complex Immobilized on a Carbon Nanotube Electrode.,
, Angew. Chemie, Int. Ed., Volume 55, Number 7, p.2517–2520, (2016)
Enzymatic versus Electrocatalytic Oxidation of NADH at Carbon-Nanotube Electrodes Modified with Glucose Dehydrogenases: Application in a Bucky-Paper-Based Glucose Enzymatic Fuel Cell.,
, ChemElectroChem, Volume 3, Number 12, p.2058–2062, (2016)
Glucose fuel cell based on carbon nanotube-supported pyrene-metalloporphyrin catalysts.,
, J. Mater. Chem. A Mater. Energy Sustain., Volume 4, Number 27, p.10635–10640, (2016)
Hosting Adamantane in the Substrate Pocket of Laccase: Direct Bioelectrocatalytic Reduction of O2 on Functionalized Carbon Nanotubes.,
, ACS Catal., Volume 6, Number 7, p.4259–4264, (2016)
Osmium(II) Complexes Bearing Chelating N-Heterocyclic Carbene and Pyrene-Modified Ligands: Surface Electrochemistry and Electron Transfer Mediation of Oxygen Reduction by Multicopper Enzymes.,
, Organometallics, Volume 35, Number 17, p.2987–2992, (2016)
Polyoxometalate [PMo11O39]7-/carbon nanocomposites for sensitive amperometric detection of nitrite.,
, Electrochim. Acta, Volume 222, p.402–408, (2016)
Recent advances on enzymatic glucose/oxygen and hydrogen/oxygen biofuel cells: Achievements and limitations.,
, J. Power Sources, Volume 325, p.252–263, (2016)
Chemically reduced electrospun polyacrilonitrile-carbon nanotube nanofibers hydrogels as electrode material for bioelectrochemical applications.,
, Carbon N. Y., Volume 87, p.233–238, (2015)
Freestanding HRP-GOx redox buckypaper as an oxygen-reducing biocathode for biofuel cell applications.,
, Energy Environ. Sci., Volume 8, Number 7, p.2069–2074, (2015)
Fully Oriented Bilirubin Oxidase on Porphyrin-Functionalized Carbon Nanotube Electrodes for Electrocatalytic Oxygen Reduction.,
, Chem. - A Eur. J., Volume 21, Number 47, p.16868–16873, (2015)
A H2/O2 enzymatic fuel cell as a sustainable power for a wireless device.,
, Electrochem. commun., Volume 60, p.216–220, (2015)
High performance miniature glucose/O2 fuel cell based on porous silicon anion exchange membrane.,
, Electrochem. commun., Volume 54, p.10–13, (2015)
Laccase wiring on free-standing electrospun carbon nanofibers using a mediator plug.,
, Chem. Commun. (Cambridge, United Kingdom), Volume 51, Number 78, p.14574–14577, (2015)
Layer-by-layer scaffold formation using magnetic attraction between HiPCO single-walled carbon nanotubes and magnetic nanoparticles: Application for high performance immunosensors.,
, Carbon N. Y., Volume 81, p.731–738, (2015)
A membraneless air-breathing hydrogen biofuel cell based on direct wiring of thermostable enzymes on carbon nanotube electrodes.,
, Chem. Commun. (Cambridge, United Kingdom), Volume 51, Number 35, p.7447–7450, (2015)
Noncovalently functionalized monolayer graphene for sensitivity enhancement of surface plasmon resonance immunosensors.,
, J. Am. Chem. Soc., Volume 137, Number 8, p.2800–2803, (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)
Recent progress in oxygen-reducing laccase biocathodes for enzymatic biofuel cells.,
, Cell. Mol. Life Sci., Volume 72, Number 5, p.941–952, (2015)
Synthesis and electrochemical characterization of original "TEMPO" functionalized multiwall carbon nanotube materials: Application to iron (II) detection.,
, Electrochem. commun., Volume 60, p.131–134, (2015)
Wiring Laccase on Covalently Modified Graphene:Carbon Nanotube Assemblies for the Direct Bio-electrocatalytic Reduction of Oxygen.,
, Chem. - A Eur. J., Volume 21, Number 8, p.3198–3201, (2015)