Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 144 checked references that resolve
resolves10.1149/1.1392036Stabilization of Wired Glucose Oxidase Anodes Rotating at 1000 rpm at 37°C
resolves10.1149/1.1393606Mechanical and Electrochemical Characteristics of Composites of Wired Glucose Oxidase and Hydrophilic Graphite
resolves10.1021/jp012488bElectroreduction of O<sub>2</sub> to Water on the “Wired” Laccase Cathode
resolves10.1149/2.F05993IFRecent Developments in Batteries for Portable Consumer Electronics Applications
resolves10.1149/2.F06033IFElectrochemical Power Sources and the Treatment of Human Illness
resolves10.1038/sj.sc.3101191Functional electrical stimulation for grasping and walking: indications and limitations
resolves10.1053/jhsu.2002.30919An advanced neuroprosthesis for restoration of hand and upper arm control using an implantable controller
resolves10.1016/0142-9612(95)98856-9Photo-crosslinked copolymers of 2-hydroxyethyl methacrylate, poly(ethylene glycol) tetra-acrylate and ethylene dimethacrylate for improving biocompatibility of biosensors
resolves10.1016/S0021-9673(01)81798-2High-performance liquid chromatographic separation of some mono- and disaccharides with detection by a post-column enzyme reactor and a chemically modified electrode
resolves10.1021/ac970127fOligosaccharide Dehydrogenase-Modified Graphite Electrodes for the Amperometric Determination of Sugars in a Flow Injection System
resolves10.1016/0022-0728(89)85004-1Amperometric enzyme electrode for maltose based on an oligosaccharide dehydrogenase-modified carbon paste electrode containing p-benzoquinone
resolves10.1006/abio.1998.2844Oligosaccharide Dehydrogenase-Catalyzed Assay for the Determination of Polysaccharides
resolves10.1007/BF00721954Reduction of oxygen in an acidic methanol/oxygen (air) fuel cell: an online MS study
resolves10.1023/A:1003413226041Iron(III) tetramethoxyphenylporphyrin(FeTMPP) as methanol tolerant electrocatalyst for oxygen reduction in direct methanol fuel cells
resolves10.1023/A:1003288609411Methanol-tolerant electrocatalysts for oxygen reduction in a polymer electrolyte membrane fuel cell
resolves10.1021/ja00245a013Electrocatalysis of oxygen reduction by chalcogenides containing mixed transition metal clusters
resolves10.1149/1.1838828Methanol Tolerant Oxygen Reduction Catalysts Based on Transition Metal Sulfides
resolves10.1023/A:1005674107841Electricity production in biofuel cell using modified graphite electrode with Neutral Red
resolves10.1002/er.765Fundamental study on biomass-fuelled ceramic fuel cell
resolves10.1023/A:1008984516499“Gastrobots”—Benefits and Challenges of Microbial Fuel Cells in FoodPowered Robot Applications
resolves10.1038/nbt867Electricity generation by direct oxidation of glucose in mediatorless microbial fuel cells
resolves10.1016/S1389-1723(01)80191-2An electrochemical approach to the studies of biological redox reactions and their applications to biosensors, bioreactors, and biofuel cells
resolves10.1016/S0022-0728(97)00393-8A methanol/dioxygen biofuel cell that uses NAD+-dependent dehydrogenases as catalysts: application of an electro-enzymatic method to regenerate nicotinamide adenine dinucleotide at low overpotentials
resolves10.1039/b009539gBioelectrocatalysis-based dihydrogen/dioxygen fuel cell operating at physiological pH
resolves10.1016/S1567-5394(02)00026-9A glucose/hydrogen peroxide biofuel cell that uses oxidase and peroxidase as catalysts by composite bulk-modified bioelectrodes based on a solid binding matrix
resolves10.1016/0022-0728(95)04236-7Theoretical treatment of diffusion and kinetics in amperometric immobilized enzyme electrodes Part I: Redox mediator entrapped within the film
resolves10.1016/0925-4005(96)01834-5Electron transfer principles in amperometric biosensors: direct electron transfer between enzymes and electrode surface
resolves10.1016/S0003-2670(99)00610-8Direct electron transfer between heme-containing enzymes and electrodes as basis for third generation biosensors
resolves10.1021/ja00024a008Spectroscopic and chemical studies of the ascorbate oxidase trinuclear copper active site: comparison to laccase
resolves10.1021/ic981327sTetracopper Assembly Complexes Comprised of One Dimetallic Core and Two Monometallic Auxiliaries: Intramolecular Electron-Transfer Relevant to Multicopper Oxidases
resolves10.1021/ja991087vSpectroscopic Studies and Electronic Structure Description of the High Potential Type 1 Copper Site in Fungal Laccase: Insight into the Effect of the Axial Ligand
resolves10.1021/ja010365zDecay of the Peroxide Intermediate in Laccase: Reductive Cleavage of the O−O Bond
resolves10.1021/jp025955dOn the Relationship between the Characteristics of Bilirubin Oxidases and O<sub>2</sub> Cathodes Based on Their “Wiring”
resolves10.1016/S0022-0728(00)00239-4Bioelectrocatalytic reduction of dioxygen to water at neutral pH using bilirubin oxidase as an enzyme and 2,2′-azinobis (3-ethylbenzothiazolin-6-sulfonate) as an electron transfer mediator
resolves10.1021/ja002339rThe Thermodynamics, Kinetics, and Molecular Mechanism of Intramolecular Electron Transfer in Human Ceruloplasmin
resolves10.1021/ja010408bThe “Wired” Laccase Cathode: High Current Density Electroreduction of O<sub>2</sub> to Water at +0.7 V (NHE) at pH 5
resolves10.1149/1.1534095A Miniature Membrane-less Biofuel Cell Operating under Physiological Conditions at 0.5 V
resolves10.1021/ac60358a034Electrochemical oxidation of reduced nicotinamide adenine dinucleotide
resolves10.1007/BF02798431Regeneration of nicotinamide cofactors for use in organic synthesis
resolves10.1021/j100127a022Spectroscopic parameters, electrode potentials, acid ionization constants, and electron exchange rates of the 2,2'-azinobis(3-ethylbenzothiazoline-6-sulfonate) radicals and ions
resolves10.1039/a801487fBiofuel cell based on glucose oxidase and microperoxidase-11 monolayer-functionalized electrodes
resolves10.1021/ja9608611Electrical Wiring of Glucose Oxidase by Reconstitution of FAD-Modified Monolayers Assembled onto Au-Electrodes
resolves10.1021/ja029510eLong Tethers Binding Redox Centers to Polymer Backbones Enhance Electron Transport in Enzyme “Wiring” Hydrogels
resolves10.1038/376672a0Improving enzyme–electrode contacts by redox modification of cofactors
resolves10.1021/la025507xThe Structure of Layer-by-Layer Self-Assembled Glucose Oxidase and Os(Bpy)<sub>2</sub>ClPyCH<sub>2</sub>NH−Poly(allylamine) Multilayers: Ellipsometric and Quartz Crystal Microbalance Studies
resolves10.1016/0040-6090(94)90120-1Immobilization of alcohol dehydrogenase enzyme in a Langmuir-Blodgett film of stearic acid: its application as an ethanol sensor
resolves10.1021/j100168a046Redox polymer films containing enzymes. 1. A redox-conducting epoxy cement: synthesis, characterization, and electrocatalytic oxidation of hydroquinone
resolves10.1021/ja00035a025Dynamics of electron hopping in assemblies of redox centers. Percolation and diffusion
resolves10.1021/j100126a019Effects of long-range electron transfer on charge transport in static assemblies of redox centers
resolves10.1021/j100014a034Effect of quaternization on electron diffusion coefficients for redox hydrogels based on poly(4-vinylpyridine)
resolves10.1021/j100144a019Electron diffusion coefficients in hydrogels formed of cross-linked redox polymers
resolves10.1016/0022-0728(92)80542-CTowards mediator design: Characterization of tris-(4,4′-substituted-2,2′-bipyridine) complexes of iron(II), ruthenium(II) and osmium(II) as mediators for glucose oxidase of Aspergillus niger and other redox proteins
resolves10.1021/ic00331a030Electrochemical parametrization of metal complex redox potentials, using the ruthenium(III)/ruthenium(II) couple to generate a ligand electrochemical series
resolves10.1021/ic50041a037Osmium(III)-Osmium(II) Electrode Potentials. The Effects of Charge, Conjugation, Coordinated Halide, and Substitution in the Ligand
resolves10.1071/CH9640622Mono- and Bis-(2,2'- bipyridine) and (1,10-phenanthroline) chelates of ruthenium and osmium. V. Mixed 2,2'-bipyridine and 2,2',2'-terpyridine chelates of bivalent and tervalent osmium
resolves10.1021/ma00222a008Synthesis, characterization, and properties of a series of osmium- and ruthenium-containing metallopolymers
resolves10.1021/ja00188a091Electrical communication between redox centers of glucose oxidase and electrodes via electrostatically and covalently bound redox polymers
resolves10.1021/j100290a001Direct electrical communication between chemically modified enzymes and metal electrodes. I. Electron transfer from glucose oxidase to metal electrodes via electron relays, bound covalently to the enzyme
resolves10.1021/ja00216a040Direct electrical communication between chemically modified enzymes and metal electrodes. 2. Methods for bonding electron-transfer relays to glucose oxidase and D-amino-acid oxidase
resolves10.1002/ange.19901020135Direkter Elektronenaustausch zwischen Graphitelektroden und einem adsorbierten Komplex aus Glucose‐Oxidase und einem Os‐haltigen Redoxpolymer
resolves10.1021/ac960554dReagentless Mediated Laccase Electrode for the Detection of Enzyme Modulators
resolves10.1021/ac00071a031Glucose electrodes based on cross-linked bis(2,2'-bipyridine)chloroosmium(+/2+) complexed poly(1-vinylimidazole) films
resolves10.1021/ja028514gA Miniature Biofuel Cell Operating in A Physiological Buffer
resolves10.1246/cl.2003.54Bilirubin Oxidase and [Fe(CN)6]3−/4− Modified Electrode Allowing Diffusion-controlled Reduction of O2 to Water at pH 7.0
resolves10.1021/ac00244a019Differential pulse voltammetric study of direct electron transfer in glucose oxidase chemically modified graphite electrodes
resolves10.1021/ac00104a006Polyacrylamide-Based Redox Polymer for Connecting Redox Centers of Enzymes to Electrodes
resolves10.1039/FT9969204131‘Wiring’ of glucose oxidase and lactate oxidase within a hydrogel made with poly(vinyl pyridine) complexed with [Os(4,4′-dimethoxy-2,2′-bipyridine)
<sub>2</sub>
Cl]
<sup>+/2+</sup>
resolves10.1149/1.1592519A Miniature Membraneless Biofuel Cell Operating at 0.36 V under Physiological Conditions
resolves10.1039/a808561gA biofuel cell based on two immiscible solvents and glucose oxidase and microperoxidase-11 monolayer-functionalized electrodes
resolves10.1021/ja0346328Characteristics of a Miniature Compartment-less Glucose−O<sub>2</sub>Biofuel Cell and Its Operation in a Living Plant
resolves10.1149/1.2412232The Mechanism of Operation of the Teflon-Bonded Gas Diffusion Electrode: A Mathematical Model
resolves10.1351/pac200476020303Understanding the reaction that powers this world: Biomimetic studies of respiratory O2 reduction by cytochrome oxidase
resolves10.1021/ja026179qFunctional Analogues of the Dioxygen Reduction Site in Cytochrome Oxidase: Mechanistic Aspects and Possible Effects of Cu<sub>B</sub>
resolves10.1021/ja973911qLoss of Activity or Gain in Stability of Oxidases upon Their Immobilization in Hydrated Silica: Significance of the Electrostatic Interactions of Surface Arginine Residues at the Entrances of the Reaction Channels
The 34 references without a DOI — listed, not checked
no DOI — not checkedcr020719kb00001/cr020719kb00001_1
no DOI — not checkedcr020719kb00002/cr020719kb00002_1
no DOI — not checkedcr020719kb00004/cr020719kb00004_1
no DOI — not checkedcr020719kb00007/cr020719kb00007_1
no DOI — not checkedACS Symp. Ser.
no DOI — not checkedKatz, E.; Shipway, A. N.; Willner, I. InHandbook of FuelCellsFundamentals, Technology and Applications; Vielstich, W., Gasteiger, H. A., Lamm, A., Eds.; John Wiley and Sons, Ltd. London, 2003; Vol. 1, p 355.
no DOI — not checkedHandbook of Batteries
no DOI — not checkedcr020719kb00029/cr020719kb00029_1
no DOI — not checkedFor current density,i=nFDCd-1Shavg-1, withn= 2,F= Faraday's constant, glucose diffusion coefficientD= 6.7 × 10-7cm2/s, glucose bulk concentrationC= 5 mM, and blood vessel diameterd= 0.4 cm. The average Sherwood number is given byShavg= 1.6(d2vL-1D-1)1/3, with average flow velocityv(cm/s) and electrode lengthL= 1 cm assumed.
no DOI — not checkedDC, 2003; http://www.cfsan.fda.gov/∼rdb/opa-g122
no DOI — not checkedDC, 2002; http://www.cfsan.fda.gov/∼rdb/opa-g106
no DOI — not checkedNorth American Maple Syrup Producers Manual
no DOI — not checkedBelgium
no DOI — not checkedVolponi, J. V.; Simmons, B. A.; Walker, A.; Ingersoll, D.TheElectrochemical Society Extended Abstracts; The Electrochemical Society: Pennington, NJ, 2004; p 673.
no DOI — not checkedcr020719kb00048/cr020719kb00048_1
no DOI — not checkedcr020719kb00057/cr020719kb00057_1
no DOI — not checkedcr020719kb00071/cr020719kb00071_1
no DOI — not checkedcr020719kb00072/cr020719kb00072_1
no DOI — not checkedcr020719kb00080/cr020719kb00080_1
no DOI — not checkedCalabrese, L. InElectronics and Biotechnology Advanced (ELBA)Forum Series; Nicolini, C., Ed.; Plenum Press: New York, 1998; Vol. 3, p 161.
no DOI — not checkedchem.qmul.ac.uk/iubmb/enzyme/ (accessed
no DOI — not checkedFL, 1992.
no DOI — not checkedPractical Handbook of Biochemistry and Molecular Biology
no DOI — not checkedGorton, L.; Dominguez, E. InEncyclopedia of Electrochemistry; Bard, A. J., Stratmann, M., Wilson, G. S., Eds.; Wiley: New York, 2002; Vol. 9, p 67.
no DOI — not checkedcr020719kb00117/cr020719kb00117_1
no DOI — not checkedRajagopalan, R.; Heller, A. InMolecular Electronics; Aviram, A., Ratner, M., Eds.; New York Academy of Sciences: New York, 1997; p 241.
no DOI — not checkedMolecular Design of Electrode Surfaces
no DOI — not checkedCassidy, H. G.; Kun, K. A.Oxidation−Reduction Polymers; RedoxPolymers; Interscience Publishers: New York, 1965.
no DOI — not checkedElectrochemical Methods: Fundamentals and Applications
no DOI — not checkedCampbell, C. N.; Heller, A.; Caruana, D. J.; Schmidtke, D. W. InElectroanalytical Methods for Biological Materials; Brajter-Toth, A., Chambers, J. Q., Eds.; Marcel Dekker: New York, 2002; p 439.
no DOI — not checkedCalabrese Barton, S.Electrochim. Acta2003, manuscript accepted.
no DOI — not checkedElectrochemical Systems
no DOI — not checkedcr020719kb00181/cr020719kb00181_1
no DOI — not checkedCRC Handbook of Biochemistry: Selected Data for Molecular Biology
checked 2026-07-23 — re-checked daily as this page is visited;
titles and statuses come from Crossref and DataCite and are not part of the signed record
Both snippets point at the live badge image and link back to this page. The
badge re-renders from the daily check, so an embed never goes stale by more than a day of visits.