Both synthetic polymers (membranes, coatings, packaging) and natural polymers (DNA, proteins) are subject to radical-initiated degradation. In order to mitigate the deterioration of the polymer properties, antioxidant strategies need to be devised. We studied the reactions of poly(α-methylstyrene sulfonate), a model compound for fuel cell membrane materials, with different degrees of polymerization with OH˙ radicals as well as subsequent reactions. We observed the resulting OH˙-adducts to react with oxygen and eliminate H2O, the relative likelihood of which is determined by pH and molecular weight. The resulting radical cations can be reduced back to the parent molecule by cerium(III). This ‘repair’ reaction is also dependent on molecular w...
A novel precursor to the distonic O- and C-centered radical cations Oxo+O• and Oxo+C• was designed a...
During operation, polymer-electrolyte-membrane (PEM) fuel cells undergo mechanical and chemical degr...
Chemical membrane degradation is a major limiting factor for polymer electrolyte fuel cell (PEFC) du...
Polymer electrolyte fuel cell (PEFC) membranes are subject to radical-induced degradation. Antioxida...
During the operation of aromatic hydrocarbon-based proton exchange membrane fuel cells, formed radic...
Formation of radicals, such as HO, H and HOO, in the membrane of the polymer electrolyte fuel cell ...
The perceived poor durability of hydrocarbon polymer electrolyte membranes remains a significant hur...
This research was focused on the efficiency of transition metal ions (TMI) as hydroxyl radical scave...
Highly reactive aromatic cation radicals have been invoked lately in synthetic routes and in the deg...
Perfluorosulfonic acid membranes are susceptible to degradation during hydrogen fuel cell operation ...
Perfluorosulfonic acid membranes are susceptible to degradation during hydrogen fuel cell operation ...
Sulfonated aromatic hydrocarbon-based ionomers are potential constituents of next-generation polymer...
This article describes some selected results of my 30 years as an industrial researcher. During this...
International audienceThe publication deals with the sulfonation of aromatic polysulfones that resul...
Proton Exchange Membrane Fuel Cells (PEMFCs) represent an innovative and promising technology for tr...
A novel precursor to the distonic O- and C-centered radical cations Oxo+O• and Oxo+C• was designed a...
During operation, polymer-electrolyte-membrane (PEM) fuel cells undergo mechanical and chemical degr...
Chemical membrane degradation is a major limiting factor for polymer electrolyte fuel cell (PEFC) du...
Polymer electrolyte fuel cell (PEFC) membranes are subject to radical-induced degradation. Antioxida...
During the operation of aromatic hydrocarbon-based proton exchange membrane fuel cells, formed radic...
Formation of radicals, such as HO, H and HOO, in the membrane of the polymer electrolyte fuel cell ...
The perceived poor durability of hydrocarbon polymer electrolyte membranes remains a significant hur...
This research was focused on the efficiency of transition metal ions (TMI) as hydroxyl radical scave...
Highly reactive aromatic cation radicals have been invoked lately in synthetic routes and in the deg...
Perfluorosulfonic acid membranes are susceptible to degradation during hydrogen fuel cell operation ...
Perfluorosulfonic acid membranes are susceptible to degradation during hydrogen fuel cell operation ...
Sulfonated aromatic hydrocarbon-based ionomers are potential constituents of next-generation polymer...
This article describes some selected results of my 30 years as an industrial researcher. During this...
International audienceThe publication deals with the sulfonation of aromatic polysulfones that resul...
Proton Exchange Membrane Fuel Cells (PEMFCs) represent an innovative and promising technology for tr...
A novel precursor to the distonic O- and C-centered radical cations Oxo+O• and Oxo+C• was designed a...
During operation, polymer-electrolyte-membrane (PEM) fuel cells undergo mechanical and chemical degr...
Chemical membrane degradation is a major limiting factor for polymer electrolyte fuel cell (PEFC) du...