One of the main sources of membrane degradation in fuel cells is attack by radicals formed wherever Pt, H2, and O2 are present. The effect of Pt precipitated in the membrane is under debate. Although Pt can provide another site for radical formation, it can also scavenge hydrogen peroxide and radicals in the membrane and improve durability. In this work, the effects of Pt particles within the membrane are evaluated and related to membrane degradation. Membranes were ex situ impregnated with 0, 10, 30, and 50mol% Pt and then tested for 100 h in a fuel cell, at 90°C/100% relative humidity. The highest degradation was observed with the membranes containing 10 mol% Pt, with fluoride emissions of the same magnitude as those of catalyst coated me...
Nafion membrane degradation was studied in a polymer electrolyte membrane fuel cell (PEMFC) under ac...
Heteropolyacids (HPAs) were adsorbed onto high surface area carbon, and incorporated in polymer elec...
Membrane degradation is a severe factor limiting the lifetime of polymer electrolyte fuel cells. The...
One of the main sources of membrane degradation in fuel cells is attack by radicals formed wherever ...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
The impact of the Pt band on ionomer degradation is controversial. Many studies found increased degr...
In proton exchange membrane fuel cells (PEMFCs), platinum (Pt) from the electrodes can be deposited ...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
The effect of platinum on free radical generation and membrane degradation in proton exchange membra...
A major degradation source in proton exchange membrane fuel cells results from radical attack of the...
In proton exchange membrane fuel cells (PEMFCs), platinum (Pt) from the electrodes can be deposited ...
Proton exchange membrane (PEM) fuel cells are devices that produce zero emission electricity, offeri...
Membrane degradation and failure is one of the factors limiting the overall durability of the polyme...
Heteropolyacids (HPAs) were adsorbed onto high surface area carbon, and incorporated in polymer elec...
Atomic force microscopy (AFM) and scanning electron microscopy (SEM) were used to investigate platin...
Nafion membrane degradation was studied in a polymer electrolyte membrane fuel cell (PEMFC) under ac...
Heteropolyacids (HPAs) were adsorbed onto high surface area carbon, and incorporated in polymer elec...
Membrane degradation is a severe factor limiting the lifetime of polymer electrolyte fuel cells. The...
One of the main sources of membrane degradation in fuel cells is attack by radicals formed wherever ...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
The impact of the Pt band on ionomer degradation is controversial. Many studies found increased degr...
In proton exchange membrane fuel cells (PEMFCs), platinum (Pt) from the electrodes can be deposited ...
The major source of membrane chemical degradation during proton exchange membrane fuel cell operatio...
The effect of platinum on free radical generation and membrane degradation in proton exchange membra...
A major degradation source in proton exchange membrane fuel cells results from radical attack of the...
In proton exchange membrane fuel cells (PEMFCs), platinum (Pt) from the electrodes can be deposited ...
Proton exchange membrane (PEM) fuel cells are devices that produce zero emission electricity, offeri...
Membrane degradation and failure is one of the factors limiting the overall durability of the polyme...
Heteropolyacids (HPAs) were adsorbed onto high surface area carbon, and incorporated in polymer elec...
Atomic force microscopy (AFM) and scanning electron microscopy (SEM) were used to investigate platin...
Nafion membrane degradation was studied in a polymer electrolyte membrane fuel cell (PEMFC) under ac...
Heteropolyacids (HPAs) were adsorbed onto high surface area carbon, and incorporated in polymer elec...
Membrane degradation is a severe factor limiting the lifetime of polymer electrolyte fuel cells. The...