The effect of ion exchange capacity (IEC) on the water sorption properties of high IEC, short side chain (SSC) PFSA ionomer membranes, and the relationships between water content, proton conductivity, proton mobility, water permeation, oxygen diffusion, and oxygen permeation are investigated. SSC PFSA ionomer membranes possessing 1.3, 1.4, and 1.5 mmol g-1 IEC are compared to a series of long side chain (LSC) PFSA ionomer membranes ranging in IEC from 0.9 to 1.13 mmol g-1. At 25 C, fully-hydrated SSC ionomer membranes are characterized as possessing higher water contents (56\u201375 vol percent), moderate values (15\u201318), high analytical acid concentrations (2\u20132.8 M), and moderate conductivity (88\u2013115 mS/cm); but lower than an...
The chemical and structural features of proton exchange membranes (PEMs) are related to their fuel c...
Perfluorinated sulfonic acid (PFSA) ionomers have high proton conductivity and excellent mechanical-...
In this work, the properties of univalent, that is, Li+, Na+, NH4+, and TEA+ form perfluorosulfonate...
The influence of ion exchange capacity (IEC) on the water sorption properties of high IEC, short sid...
Polarization curves of fuel cells incorporating PFSA short-side chain (SSC) ionomer membranes having...
10 pagesInternational audienceShort-side-chain (SSC) perfluorosulfonic acid ionomers (Dow 840 and Do...
The proton conductivity and water uptake were measured for a series of 3M ionomer membranes with var...
This work is focused on advancing the understanding of the structures and properties of sulfonated i...
Cell voltage at high current densities (HCD) of an operating proton-exchange membrane fuel cell (PEM...
none7The sorption and diffusion properties of water vapor in a new, short-side-chain perfluorosulfon...
A greater understanding of the behavior of proton exchange membranes (PEMs) is critical to advance s...
Proton transport in proton exchange membranes (PEMs) depends on interaction between water and acid g...
This work investigated several proton exchange membranes (PEMs): perfluorosulfonic acid-based polyme...
International audienceDesigning highly conductive ionomers at high temperature and low relative humi...
Hydrogen gas diffusion coefficients and solubilities as well as water uptake values are reported for...
The chemical and structural features of proton exchange membranes (PEMs) are related to their fuel c...
Perfluorinated sulfonic acid (PFSA) ionomers have high proton conductivity and excellent mechanical-...
In this work, the properties of univalent, that is, Li+, Na+, NH4+, and TEA+ form perfluorosulfonate...
The influence of ion exchange capacity (IEC) on the water sorption properties of high IEC, short sid...
Polarization curves of fuel cells incorporating PFSA short-side chain (SSC) ionomer membranes having...
10 pagesInternational audienceShort-side-chain (SSC) perfluorosulfonic acid ionomers (Dow 840 and Do...
The proton conductivity and water uptake were measured for a series of 3M ionomer membranes with var...
This work is focused on advancing the understanding of the structures and properties of sulfonated i...
Cell voltage at high current densities (HCD) of an operating proton-exchange membrane fuel cell (PEM...
none7The sorption and diffusion properties of water vapor in a new, short-side-chain perfluorosulfon...
A greater understanding of the behavior of proton exchange membranes (PEMs) is critical to advance s...
Proton transport in proton exchange membranes (PEMs) depends on interaction between water and acid g...
This work investigated several proton exchange membranes (PEMs): perfluorosulfonic acid-based polyme...
International audienceDesigning highly conductive ionomers at high temperature and low relative humi...
Hydrogen gas diffusion coefficients and solubilities as well as water uptake values are reported for...
The chemical and structural features of proton exchange membranes (PEMs) are related to their fuel c...
Perfluorinated sulfonic acid (PFSA) ionomers have high proton conductivity and excellent mechanical-...
In this work, the properties of univalent, that is, Li+, Na+, NH4+, and TEA+ form perfluorosulfonate...