Degradation reactions of perfluorosulfonic acid ionomers via H or OH radicals were investigated employing B3LYP/6-311++G (2d,2p) and ωB97XD/6-311++G (2d,2p). All important degradation reaction mechanisms of a model compound for perfluorosulfonic acid ionomers were analyzed, including optimized structures of related transition states, intermediates, and products. The ionomer backbones were more damaged by H radicals than by OH radicals. H radicals induced both main and side chain scission, while OH radicals mainly induced side chain scission. The C–S bond of the ionomers was the weakest site against both H and OH radical attacks. The ether group was also weak, suffering bond cleavage after H radical attacks on the backbone. H radicals prefer...
The perceived poor durability of hydrocarbon polymer electrolyte membranes remains a significant hur...
This study explores structure-reactivity relationships for the degradation of emerging perfluoroalky...
Polymer electrolyte fuel cell (PEFC) membranes are subject to radical-induced degradation. Antioxida...
Formation of radicals, such as HO, H and HOO, in the membrane of the polymer electrolyte fuel cell ...
Different functions are expected from the polymer electrolyte membranes used in fuel cells. They wor...
We report molecular-level quantification of chemical degradation of perfluorosulfonated acid (PFSA) ...
A vapor phase peroxide test was developed and compared to aqueous Fenton’s test and to in-situ fuel ...
Selective formation and reactivity of hydrogen (H<sup>•</sup>) and hydroxyl (HO<sup>•</sup>) radical...
Chemical degradation of perfluorosulfonic acid (PFSA) membranes of proton exchange membrane (PEM) fu...
Sulfonated aromatic hydrocarbon-based ionomers are potential constituents of next-generation polymer...
Side chain flexibility in perfluorosulfonic acid (PFSA) ionomers has been explored through ab initio...
A polymer-electrolyte membrane fuel cell model that incorporates chemical degradation in perlfluorin...
International audienceDesigning highly conductive ionomers at high temperature and low relative humi...
Perfluorosulfonic acids such as Nafion are industrial standard cation exchange ionomers for polymer ...
International audienceTo improve the lifetime of proton-exchange membrane (PEM) fuel cells, it is ne...
The perceived poor durability of hydrocarbon polymer electrolyte membranes remains a significant hur...
This study explores structure-reactivity relationships for the degradation of emerging perfluoroalky...
Polymer electrolyte fuel cell (PEFC) membranes are subject to radical-induced degradation. Antioxida...
Formation of radicals, such as HO, H and HOO, in the membrane of the polymer electrolyte fuel cell ...
Different functions are expected from the polymer electrolyte membranes used in fuel cells. They wor...
We report molecular-level quantification of chemical degradation of perfluorosulfonated acid (PFSA) ...
A vapor phase peroxide test was developed and compared to aqueous Fenton’s test and to in-situ fuel ...
Selective formation and reactivity of hydrogen (H<sup>•</sup>) and hydroxyl (HO<sup>•</sup>) radical...
Chemical degradation of perfluorosulfonic acid (PFSA) membranes of proton exchange membrane (PEM) fu...
Sulfonated aromatic hydrocarbon-based ionomers are potential constituents of next-generation polymer...
Side chain flexibility in perfluorosulfonic acid (PFSA) ionomers has been explored through ab initio...
A polymer-electrolyte membrane fuel cell model that incorporates chemical degradation in perlfluorin...
International audienceDesigning highly conductive ionomers at high temperature and low relative humi...
Perfluorosulfonic acids such as Nafion are industrial standard cation exchange ionomers for polymer ...
International audienceTo improve the lifetime of proton-exchange membrane (PEM) fuel cells, it is ne...
The perceived poor durability of hydrocarbon polymer electrolyte membranes remains a significant hur...
This study explores structure-reactivity relationships for the degradation of emerging perfluoroalky...
Polymer electrolyte fuel cell (PEFC) membranes are subject to radical-induced degradation. Antioxida...