We have studied the solubility, mechanical properties, and mass transport behavior of a series of methylpiperidinium-functionalized polyethylene (PEPM) ionomers with different ion-exchange capacities (IECs) for anion-exchange membrane fuel cells (AEMFCs). The influence of IEC on the ionomer viscoelasticity in water and the transport/permeability of charged and uncharged species were investigated by acoustic impedance tests and electrochemical measurements, respectively. We found that the solubility of the PEPM ionomers increased with increasing IEC, while the rigidity of the ionomer films in water was reduced due to the higher content of the hydrophilic cations in the ionomers. In electrochemical tests, N,N,N′,N′-tetramethyl-p-phenylenediam...
In the last few years, the development of radiation-grafted powder-form anion-exchange ionomers (AEI...
Alkaline polymer electrolyte fuel cells (APEFCs) using a quaternary ammonium functionalized ethylene...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...
Advanced anion exchange membranes have the potential to enable new electrochemical devices based on ...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
Polymer electrolyte membrane (PEM) fuel cells are promising candidates for powering automotive vehic...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
Awakening interest in anion exchange membrane fuel cells (AEMFC) for low temperature applications ha...
Abstract As one of the most crucial components, the catalyst layer (CL) plays a critical role in the...
Ionomer thin‐films (i.e., 20–100 nm) on supports serve as model systems to understand ionomer‐cataly...
Alkali anion exchange membrane (AEM) based devices have the potential for electrochemical energy con...
Four novel poly(phenylene oxide)-based anion exchange membranes were investigated for electrochemica...
International audienceProton-conducting ionomers are widespread materials for application in electro...
The electrode fabrication and resulting microstructure are the main determinates of the performance ...
The stability of anion exchange membranes is paramount for the use in alkaline fuel cells. Long-chai...
In the last few years, the development of radiation-grafted powder-form anion-exchange ionomers (AEI...
Alkaline polymer electrolyte fuel cells (APEFCs) using a quaternary ammonium functionalized ethylene...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...
Advanced anion exchange membranes have the potential to enable new electrochemical devices based on ...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
Polymer electrolyte membrane (PEM) fuel cells are promising candidates for powering automotive vehic...
The potential of anion exchange membrane (AEM) fuel cells to provide inexpensive compact power from ...
Awakening interest in anion exchange membrane fuel cells (AEMFC) for low temperature applications ha...
Abstract As one of the most crucial components, the catalyst layer (CL) plays a critical role in the...
Ionomer thin‐films (i.e., 20–100 nm) on supports serve as model systems to understand ionomer‐cataly...
Alkali anion exchange membrane (AEM) based devices have the potential for electrochemical energy con...
Four novel poly(phenylene oxide)-based anion exchange membranes were investigated for electrochemica...
International audienceProton-conducting ionomers are widespread materials for application in electro...
The electrode fabrication and resulting microstructure are the main determinates of the performance ...
The stability of anion exchange membranes is paramount for the use in alkaline fuel cells. Long-chai...
In the last few years, the development of radiation-grafted powder-form anion-exchange ionomers (AEI...
Alkaline polymer electrolyte fuel cells (APEFCs) using a quaternary ammonium functionalized ethylene...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...