The influence of the shape of Au nanoparticles on the catalytic current of fructose dehydrogenase

scientific article published on 08 July 2019

The influence of the shape of Au nanoparticles on the catalytic current of fructose dehydrogenase is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1007/S00216-019-01944-6
P932PMC publication ID6881425
P698PubMed publication ID31286179

P50authorMarcelo CalderónQ38799476
Julian BergueiroQ57172340
Lo GortonQ88805283
P2093author name stringKenji Kano
Oscar Rojas-Carrillo
Paolo Bollella
Yuya Hibino
Jackeline Soto-Cruz
Paolo Conejo-Valverde
P2860cites workElectrochemical sensors and biosensors based on nanomaterials and nanostructuresQ23911041
Gold nanoparticles: assembly, supramolecular chemistry, quantum-size-related properties, and applications toward biology, catalysis, and nanotechnologyQ29617209
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Heterologous overexpression and characterization of a flavoprotein-cytochrome c complex fructose dehydrogenase of Gluconobacter japonicus NBRC3260Q41450873
Coulometric D-fructose biosensor based on direct electron transfer using D-fructose dehydrogenase.Q43243547
Rapid and direct determination of fructose in food: a new osmium-polymer mediated biosensor.Q43614370
Stabilization of ferrocene leakage by physical retention in a cellulose acetate membrane. The fructose biosensorQ43851235
Modified gold surfaces by poly(amidoamine) dendrimers and fructose dehydrogenase for mediated fructose sensingQ44648408
An amperometric fructose biosensor based on fructose dehydrogenase immobilized in a membrane mimetic layer on gold.Q46002343
Biogenic synthesis of Au and Ag nanoparticles using aqueous solutions of Black Tea leaf extractsQ46105216
Development of a simple, low cost chronoamperometric assay for fructose based on a commercial graphite-nanoparticle modified screen-printed carbon electrodeQ46299402
D-fructose detection based on the direct heterogeneous electron transfer reaction of fructose dehydrogenase adsorbed onto multi-walled carbon nanotubes synthesized on platinum electrodeQ46426184
Monodisperse gold nanotriangles: size control, large-scale self-assembly, and performance in surface-enhanced Raman scatteringQ47172969
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Depletion-induced shape and size selection of gold nanoparticlesQ47438773
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Amperometric fructose sensor based on ferrocyanide modified screen-printed carbon electrode.Q50518556
Fructose/dioxygen biofuel cell based on direct electron transfer-type bioelectrocatalysis.Q51029663
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c,T-dependence of the viscosity and the self-diffusion coefficients in some aqueous carbohydrate solutions.Q52070736
Biosupercapacitors for powering oxygen sensing devices.Q53511282
Direct Electron Transfer of Dehydrogenases for Development of 3rd Generation Biosensors and Enzymatic Fuel Cells.Q55021514
Turkevich Method for Gold Nanoparticle Synthesis RevisitedQ56443624
Thermally reduced graphene oxide: The study and use for reagentless amperometric D-fructose biosensorsQ57158426
Human sulfite oxidase electrochemistry on gold nanoparticles modified electrodeQ59940738
Biosensors Based on Membrane-Bound Enzymes Immobilized in a 5-(Octyldithio)-2-nitrobenzoic Acid Layer on Gold ElectrodesQ60168750
The kinetic mechanism of xanthine dehydrogenase and related enzymesQ71977409
Micro-cubic monolithic carbon cryogel electrode for direct electron transfer reaction of fructose dehydrogenaseQ84861362
Highly Sensitive Membraneless Fructose Biosensor Based on Fructose Dehydrogenase Immobilized onto Aryl Thiol Modified Highly Porous Gold Electrode: Characterization and Application in Food SamplesQ91155474
P433issue29
P407language of work or nameEnglishQ1860
P921main subjectnanoparticleQ61231
P1104number of pages13
P304page(s)7645-7657
P577publication date2019-07-08
P1433published inAnalytical and Bioanalytical ChemistryQ2845280
P1476titleThe influence of the shape of Au nanoparticles on the catalytic current of fructose dehydrogenase
P478volume411

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