Electrochemistry is an old but still flourishing field of research due to the importance of the efficiency and kinetics of electrochemical reactions in industrial processes and (bio-)electrochemical devices. The heterogeneous electron transfer from an electrode to a reactant in the solution has been well studied for metal, semiconductor, metal oxide, and carbon electrodes. For those electrode materials, there is little correlation between the electronic transport within the electrode material and the electron transfer occurring at the interface between the electrode and the solution. Here, we investigate the heterogeneous electron transfer between a conducting polymer electrode and a redox couple in an electrolyte. As a benchmark system, we...
The essential features of charge transport in conducting polymer film electrodes are discussed. Sele...
Molecular oxygen requires activation in order to be reduced, which prompts extensive searching for e...
[EN] The direct electron transfer (DET) to redox proteins has become a central topic in the developm...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
Conductive polymer electrodes have exceptional promise for next-generation bioelectronics and energy...
Controlling interfacial electron-transfer rates is fundamental to maximizing device efficiencies in ...
Conducting polymers can act as electrodes oxidizing/reducing redox systems in electrolytes. The mech...
Charge-transfer reactions of selected ionic redox couples were studied on rotating glassy carbon ele...
Electrochemical systems, which rely on coupled phenomena of the chemical change and electricity, hav...
Electrochemical systems, which rely on coupled phenomena of the chemical change and electricity, hav...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
The essential features of charge transport in conducting polymer film electrodes are discussed. Sele...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
The essential features of charge transport in conducting polymer film electrodes are discussed. Sele...
Molecular oxygen requires activation in order to be reduced, which prompts extensive searching for e...
[EN] The direct electron transfer (DET) to redox proteins has become a central topic in the developm...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
Electrochemistry is an old but still flourishing field of research due to the importance of the effi...
Conductive polymer electrodes have exceptional promise for next-generation bioelectronics and energy...
Controlling interfacial electron-transfer rates is fundamental to maximizing device efficiencies in ...
Conducting polymers can act as electrodes oxidizing/reducing redox systems in electrolytes. The mech...
Charge-transfer reactions of selected ionic redox couples were studied on rotating glassy carbon ele...
Electrochemical systems, which rely on coupled phenomena of the chemical change and electricity, hav...
Electrochemical systems, which rely on coupled phenomena of the chemical change and electricity, hav...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
The essential features of charge transport in conducting polymer film electrodes are discussed. Sele...
Fossil fuels are still the dominant (ca. 80%) energy source in our society. A significant fraction i...
The essential features of charge transport in conducting polymer film electrodes are discussed. Sele...
Molecular oxygen requires activation in order to be reduced, which prompts extensive searching for e...
[EN] The direct electron transfer (DET) to redox proteins has become a central topic in the developm...