In water electrolyzers, polymer electrolyte membranes (PEMs) such as Nafion can accumulate cations stemming from salt impurities in the water supply, which leads to severe cell voltage increases. This combined experimental and computational study discusses the influence of sodium ion poisoning on the ionic conductivity of Nafion membranes and the ion transport in a thereon based water electrolysis cell. Conductivities of Nafion and aqueous solutions with the same amount of dissolved cations are measured with impedance spectroscopy and compared with respect to Nafion’s microstructure. The dynamic behavior of the voltage of a water electrolysis cell is characterized as a function of the sodium ion content and current density, showing the diff...
The transport properties of perfluorinated cation exchange membranes in chlor\u2010alkali cell solut...
Due to the excellent proton conductivity of Nation membranes in polymer electrolyte membrane fuel ce...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...
Water electrolysis is an effective, durable and emission free technique to convert electrical energy...
Na+ is a likely intrinsic impurity in water and is a potential cation impurity in the solid polymer ...
We performed a numerical analysis of the influences of contaminated metal ion on the dynamic propert...
Cationic contamination degrades polymer electrolyte membrane fuel cell (PEMFC) performance by decrea...
Water uptake of polymer exchange membranes (PEMs) such as Nafion® leads to water channels that are s...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
AC impedance spectroscopy has been employed to study the conduction of protons in Nafion 117 polymer...
A study of the influence of sodium ions on the solid polymer electrolyte (SPE) water electrolysis is...
Proton Exchange Membrane (PEM) technology cannot meet fuel cell and electrolyzer durability standard...
Due to the excellent proton conductivity of Nafion membranes in polymer electrolyte membrane fuel ce...
Hydrogen, a clean and renewable energy source, is a promising substitute for fossil fuels. Electrici...
Recently, alkaline membrane water electrolysis, in which membranes are in direct contact with water ...
The transport properties of perfluorinated cation exchange membranes in chlor\u2010alkali cell solut...
Due to the excellent proton conductivity of Nation membranes in polymer electrolyte membrane fuel ce...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...
Water electrolysis is an effective, durable and emission free technique to convert electrical energy...
Na+ is a likely intrinsic impurity in water and is a potential cation impurity in the solid polymer ...
We performed a numerical analysis of the influences of contaminated metal ion on the dynamic propert...
Cationic contamination degrades polymer electrolyte membrane fuel cell (PEMFC) performance by decrea...
Water uptake of polymer exchange membranes (PEMs) such as Nafion® leads to water channels that are s...
A 9-cell proton exchange membrane (PEM) water electrolysis stack is developed and tested for 7800 h....
AC impedance spectroscopy has been employed to study the conduction of protons in Nafion 117 polymer...
A study of the influence of sodium ions on the solid polymer electrolyte (SPE) water electrolysis is...
Proton Exchange Membrane (PEM) technology cannot meet fuel cell and electrolyzer durability standard...
Due to the excellent proton conductivity of Nafion membranes in polymer electrolyte membrane fuel ce...
Hydrogen, a clean and renewable energy source, is a promising substitute for fossil fuels. Electrici...
Recently, alkaline membrane water electrolysis, in which membranes are in direct contact with water ...
The transport properties of perfluorinated cation exchange membranes in chlor\u2010alkali cell solut...
Due to the excellent proton conductivity of Nation membranes in polymer electrolyte membrane fuel ce...
Advanced polymer electrolyte membranes have the potential to enable new electrochemical devices, as ...