Aggregation in heat-treated Nafion ionomer dispersion and 117 membrane are investigated by 1H and 19F Nuclear Magnetic Resonance (NMR) spectra, spin-lattice relaxation time, and self-diffusion coefficient measurements. Results demonstrate that heat-treatment affects the average Nafion particle size in aqueous dispersions. Measurements on heat-treated Nafion 117 membrane show changes in the 1H isotropic chemical shift and no significant changes in ionic conductivity. Scanning electron microscopy (SEM) analysis of prepared cathode catalyst layer containing the heat-treated dispersions reveals that the surface of the electrode with the catalyst ink that has been pretreated at ca. 80 °C exhibits a compact and uniform morphology. The decrease of...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
Interest in fuel cell technology is rising as a result of the need for more affordable and available...
The performance of polymer electrolyte fuel cells and electrolysers depends on the nanostructure of ...
Aggregation in heat-treated Nafion ionomer dispersion and 117 membrane are investigated by 1H and 19...
The effect of Nafion((R)) ionomer aggregation in solution on the structure of the cathode catalyst l...
This work represents a systematic and in-depth study of how Nafion 1100 membrane preparation procedu...
In this work the influence of the ionomer content in the electrodes on DMFC operation is studied. Na...
In this work, we report the direct methanol fuel cell (DMFC) performance of micro-patterned (μp) Naf...
Cationic contamination degrades polymer electrolyte membrane fuel cell (PEMFC) performance by decrea...
The effect of Nafion ionomer content on performance of a proton exchange membrane (PEM) fuel cell op...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
International audienceIn a Proton Exchanging Membrane Fuel Cell (PEMFC), the membrane is at the hear...
In this study, Nation ionomer, as a kind of hyperdispersant, was added to poly tetrafluoroethylene (...
Abstract Herein, the performance of alkaline, membraneless, and direct formate fuel cells (DFFCs) in...
Interaction between the ionomer binder and catalyst nanoparticles in catalyst ink is well known to p...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
Interest in fuel cell technology is rising as a result of the need for more affordable and available...
The performance of polymer electrolyte fuel cells and electrolysers depends on the nanostructure of ...
Aggregation in heat-treated Nafion ionomer dispersion and 117 membrane are investigated by 1H and 19...
The effect of Nafion((R)) ionomer aggregation in solution on the structure of the cathode catalyst l...
This work represents a systematic and in-depth study of how Nafion 1100 membrane preparation procedu...
In this work the influence of the ionomer content in the electrodes on DMFC operation is studied. Na...
In this work, we report the direct methanol fuel cell (DMFC) performance of micro-patterned (μp) Naf...
Cationic contamination degrades polymer electrolyte membrane fuel cell (PEMFC) performance by decrea...
The effect of Nafion ionomer content on performance of a proton exchange membrane (PEM) fuel cell op...
The structure and morphology of fuel cell catalyst layers and concomitant system properties, particu...
International audienceIn a Proton Exchanging Membrane Fuel Cell (PEMFC), the membrane is at the hear...
In this study, Nation ionomer, as a kind of hyperdispersant, was added to poly tetrafluoroethylene (...
Abstract Herein, the performance of alkaline, membraneless, and direct formate fuel cells (DFFCs) in...
Interaction between the ionomer binder and catalyst nanoparticles in catalyst ink is well known to p...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
Interest in fuel cell technology is rising as a result of the need for more affordable and available...
The performance of polymer electrolyte fuel cells and electrolysers depends on the nanostructure of ...