The conductivity of fuel cell membranes as well as their mechanical properties at the nanometer scale were characterized using advanced tapping mode atomic force microscopy (AFM) techniques. AFM produces high-resolution images under continuous current flow of the conductive structure at the membrane surface and provides some insight into the bulk conducting network in Nafion membranes. The correlation of conductivity with other mechanical properties, such as adhesion force, deformation and stiffness, were simultaneously measured with the current and provided an indication of subsurface phase separations and phase distribution at the surface of the membrane. The distribution of conductive pores at the surface was identified by the formation ...
The morphological and conductive structure of surface and bulk of different ionomer, namely Nafion®,...
Using material-sensitive and conductive atomic force microscopy (AFM) on cross sections of perfluori...
A material-sensitive atomic force microscopic (AFM) tapping mode was combined with current measureme...
The conductivity of fuel cell membranes as well as their mechanical propertiesat the nanometer scale...
Nafion represents the most commonly employed and well characterized proton exchange membrane (PEM) u...
In this contribution we report on the nanostructure and conductivity of freshly prepared as well as ...
Proton-conducting membranes are a key component of PEM fuel cells: the properties of these membranes...
High membrane conductivity is one of the key parameters in polymer electrolyte fuel cell application...
The properties of the components of a membrane electrode assembly in a polymer electrolyte fuel cell...
Proton exchange membrane (PEM) fuel cells offer an alternative as an efficient power source with low...
tThe conductivity of three different sulfonated polymer electrolyte membranes (PEM), two perfluori-n...
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...
The relation between proton exchange membrane (PEM) hydration and fuel cell performance has been wel...
The Nafion is a commonly used polyelectrolyte membrane (PEM) in fuel cells and flow batteries. Nanoc...
The morphological and conductive structure of surface and bulk of different ionomer, namely Nafion®,...
Using material-sensitive and conductive atomic force microscopy (AFM) on cross sections of perfluori...
A material-sensitive atomic force microscopic (AFM) tapping mode was combined with current measureme...
The conductivity of fuel cell membranes as well as their mechanical propertiesat the nanometer scale...
Nafion represents the most commonly employed and well characterized proton exchange membrane (PEM) u...
In this contribution we report on the nanostructure and conductivity of freshly prepared as well as ...
Proton-conducting membranes are a key component of PEM fuel cells: the properties of these membranes...
High membrane conductivity is one of the key parameters in polymer electrolyte fuel cell application...
The properties of the components of a membrane electrode assembly in a polymer electrolyte fuel cell...
Proton exchange membrane (PEM) fuel cells offer an alternative as an efficient power source with low...
tThe conductivity of three different sulfonated polymer electrolyte membranes (PEM), two perfluori-n...
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...
The relation between proton exchange membrane (PEM) hydration and fuel cell performance has been wel...
The Nafion is a commonly used polyelectrolyte membrane (PEM) in fuel cells and flow batteries. Nanoc...
The morphological and conductive structure of surface and bulk of different ionomer, namely Nafion®,...
Using material-sensitive and conductive atomic force microscopy (AFM) on cross sections of perfluori...
A material-sensitive atomic force microscopic (AFM) tapping mode was combined with current measureme...