In der vorliegenden Arbeit wird die Methode der EC-AFM erweitert, um aus zeit- und ortsaufgelösten Strom-Transienten tiefere Einblicke vor allem in die Dynamik des Systems im Nanometerbereich zu erhalten. Hierzu wird die AFM-Spitze am Ausgang eines protonenleitfähigen Kanals einer Nafion®-Membran platziert und ein Spannungssprung angelegt. Die daraus resultierende Strom-Antwort spiegelt die Eigenschaften des Systems wider und wird durch elektrochemische Reaktionen, kapazitive Effekte und den Einfluss der Membran bestimmt. Die Interpretation der Strom-Zeit-Kurven erfolgt zunächst in der Zeit-Domäne. Mithilfe der Fourier-Transformation können die Strom-Zeit-Kurven und die Spannungs-Zeit-Kurven in die Frequenz-Domäne überführt werden. Hie...
Proton exchange membrane (PEM) fuel cells offer an alternative as an efficient power source with low...
The use of scanning electrochemical microscopy (SECM) to evaluate the apparent diffusion coefficient...
The properties of the components of a membrane electrode assembly in a polymer electrolyte fuel cell...
Electrochemical atomic force microscopy allows spatially resolved measurements of proton conductivit...
Spatially resolved impedance spectroscopy of a Nafion polyelectrolyte membrane is performed employin...
High membrane conductivity is one of the key parameters in polymer electrolyte fuel cell application...
We show that the local proton conductance distribution in Nafion membranes can be mapped using curre...
The distribution of ion conductive channels on the Nafion membrane surface, which determines the for...
Nafion represents the most commonly employed and well characterized proton exchange membrane (PEM) u...
The conductivity of fuel cell membranes as well as their mechanical properties at the nanometer scal...
In this contribution we report on the nanostructure and conductivity of freshly prepared as well as ...
AC impedance spectroscopy has been employed to study the conduction of protons in Nafion 117 polymer...
Proton exchange membrane fuel cells convert chemical energy into electrical energy at high efficienc...
This study focuses on the characterization of gas permeation through Nafion, the most commonly used ...
The conductivity of fuel cell membranes as well as their mechanical propertiesat the nanometer scale...
Proton exchange membrane (PEM) fuel cells offer an alternative as an efficient power source with low...
The use of scanning electrochemical microscopy (SECM) to evaluate the apparent diffusion coefficient...
The properties of the components of a membrane electrode assembly in a polymer electrolyte fuel cell...
Electrochemical atomic force microscopy allows spatially resolved measurements of proton conductivit...
Spatially resolved impedance spectroscopy of a Nafion polyelectrolyte membrane is performed employin...
High membrane conductivity is one of the key parameters in polymer electrolyte fuel cell application...
We show that the local proton conductance distribution in Nafion membranes can be mapped using curre...
The distribution of ion conductive channels on the Nafion membrane surface, which determines the for...
Nafion represents the most commonly employed and well characterized proton exchange membrane (PEM) u...
The conductivity of fuel cell membranes as well as their mechanical properties at the nanometer scal...
In this contribution we report on the nanostructure and conductivity of freshly prepared as well as ...
AC impedance spectroscopy has been employed to study the conduction of protons in Nafion 117 polymer...
Proton exchange membrane fuel cells convert chemical energy into electrical energy at high efficienc...
This study focuses on the characterization of gas permeation through Nafion, the most commonly used ...
The conductivity of fuel cell membranes as well as their mechanical propertiesat the nanometer scale...
Proton exchange membrane (PEM) fuel cells offer an alternative as an efficient power source with low...
The use of scanning electrochemical microscopy (SECM) to evaluate the apparent diffusion coefficient...
The properties of the components of a membrane electrode assembly in a polymer electrolyte fuel cell...