Search Results - "de Groot, Matheus T"
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Electron Transfer and Ligand Binding to Cytochrome c‘ Immobilized on Self-Assembled Monolayers
Published in Langmuir (16-01-2007)“…We have successfully immobilized Allochromatium vinosum cytochrome c‘ on carboxylic acid-terminated thiol monolayers on gold and have investigated its…”
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2
Mass transfer in 3D‐printed electrolyzers: The importance of inlet effects
Published in AIChE journal (01-06-2021)“…This article investigates the effect of inlet shape, entrance length, and turbulence promoters on mass transfer by using 3D‐printed electrolyzers. Our results…”
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3
Ohmic resistance in zero gap alkaline electrolysis with a Zirfon diaphragm
Published in Electrochimica acta (10-02-2021)“…•The resistance of the Zirfon diaphragm is as expected for a porous separator.•Fitted zero gap resistances significantly exceed the diaphragm resistance.•The…”
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4
Reorganization of Immobilized Horse and Yeast Cytochrome c Induced by pH Changes or Nitric Oxide Binding
Published in Langmuir (27-03-2007)“…The redox properties of horse and yeast cytochrome c electrostatically immobilized on carboxylic acid-terminated self-assembled monolayers (SAMs) have been…”
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5
Alkaline water electrolysis: with or without iron in the electrolyte?
Published in Current opinion in chemical engineering (01-12-2023)“…The presence of iron in the electrolyte has a significant impact on the performance of the electrodes in alkaline water electrolysis. For nickel-based anodes,…”
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6
Nitrogen Cycle Electrocatalysis
Published in Chemical reviews (01-06-2009)“…The electrocatalytic reactions of several inorganic nitrogen compounds are examined. The chemical compounds examined include nitrate and ammonia…”
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7
Electrodialysis for the concentration of ethanolamine salts
Published in Journal of membrane science (01-04-2011)“…► Monoethanol amine salts can be concentrated up to 18wt% using electrodialysis. ► The output concentration strongly depends on the applied current density. ►…”
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8
Separating kinetics and mass transfer in formic acid and formate oxidation on boron doped diamond electrodes
Published in Journal of electroanalytical chemistry (Lausanne, Switzerland) (01-11-2020)“…This paper describes the electrochemical oxidation of formic acid (pH 2) and formate (pH 6 and pH 10) on boron doped diamond electrodes and separates kinetic…”
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9
Current efficiency and mass transfer effects in electrochemical oxidation of C1 and C2 carboxylic acids on boron doped diamond electrodes
Published in Chemical engineering journal advances (15-05-2021)“…•Most carboxylic acids studied can react via a direct electron transfer mechanism.•Acetic acid can only be oxidized via •OH-radicals.•Glyoxylic and glycolic…”
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10
Electrochemical oxidation of benzoic acid and its aromatic intermediates on boron doped diamond electrodes
Published in Current research in green and sustainable chemistry (2021)“…Electrochemical oxidation using Boron-doped diamond (BDD) electrodes is a promising purification technique to remove organic pollutants, such as benzoic acid,…”
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11
Redox transitions of chromium, manganese, iron, cobalt and nickel protoporphyrins in aqueous solution
Published in Physical chemistry chemical physics : PCCP (01-01-2008)“…The electrochemical redox behavior of immobilized chromium, manganese, iron, cobalt, and nickel protoporphyrins IX has been investigated over the pH 0-14…”
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12
Bipolar membrane electrodialysis for the alkalinization of ethanolamine salts
Published in Journal of membrane science (15-08-2011)“…► Bipolar membrane electrodialysis can be used to convert monoethanolamine chloride into alkaline monoethanolamine. ► With a two compartment setup using an…”
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13
Advanced characterization of alkaline water electrolysis through electrochemical impedance spectroscopy and polarization curves
Published in Journal of electroanalytical chemistry (Lausanne, Switzerland) (01-12-2024)“…•EIS enables distinction between anodic and cathodic processes.•Tafel slopes can be derived from charge transfer resistances.•Capacitances can potentially…”
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14
Electrochemical Reduction of NO by Hemin Adsorbed at Pyrolitic Graphite
Published in Journal of the American Chemical Society (25-05-2005)“…The mechanism of the electrochemical reduction of nitric oxide (NO) by hemin adsorbed at pyrolitic graphite was investigated. The selectivity of NO reduction…”
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15
Optimal operating parameters for advanced alkaline water electrolysis
Published in International journal of hydrogen energy (30-09-2022)“…Advanced zero-gap alkaline electrolyzers can be operated at a significantly higher current density than traditional alkaline electrolyzers. We have…”
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16
Heme Release in Myoglobin−DDAB Films and Its Role in Electrochemical NO Reduction
Published in Journal of the American Chemical Society (23-11-2005)“…Electrochemical nitric oxide (NO) reduction by heme groups incorporated in films of didodecyldimethylammonium bromide (DDAB) on pyrolitic graphite was…”
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17
Evidence for heme release in layer-by-layer assemblies of myoglobin and polystyrenesulfonate on pyrolitic graphite
Published in Journal of biological inorganic chemistry (01-08-2007)“…Layer-by-layer assemblies of myoglobin and polystyrenesulfonate (PSS) on pyrolitic graphite have been investigated with the goal of determining the origin of…”
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18
Unraveling the impact of reverse currents on electrode stability in anion exchange membrane water electrolysis
Published in Journal of power sources (01-09-2024)“…Anion Exchange Membrane Water Electrolysis (AEMWE) stands out as one of the promising ways of producing green hydrogen. However, significant strides in…”
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19
Additional evidence for heme release in myoglobin-DDAB films on pyrolitic graphite
Published in Electrochemistry communications (01-06-2006)“…In a recent paper [1] we claimed that heme release can occur in myoglobin-DDAB films under certain conditions. Our conclusion was based on the similar…”
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Impact of power supply fluctuation and part load operation on the efficiency of alkaline water electrolysis
Published in Journal of power sources (15-03-2023)“…Contrary to traditional electrolysers which operate continuously at their nominal load, future alkaline electrolysers need to be able to operate over a wide…”
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