The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of energy storage and conversion devices. Various reinforcement strategies exist for the improvement of the performances of the overall membrane. We propose in this article the stabilization of membranes based on aromatic ion conducting polymers (SPEEK and SPPSU) by the introduction of an electrospun mat of inexpensive PPSU polymer. Characterization data from hydrolytic stability (mass uptake and dimension change) and from mechanical and conductivity measurements show an improved stability of membranes in phosphate buffer, used for enzymatic fuel cells, and in distilled water. The synergistic effect of the reinforcement, together with the casti...
Sulfonated poly(etheretherketone) (SPEEK), with 577 g per equivalent proton, was made by the direct ...
Sulfonated aromatic polymers (SAP) are promising ionomer materials, however for applications a...
Composite membranes formed by sulfonated poly-ether-ether-ketone (SPEEK) and sulfonated and/or silyl...
The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of...
International audienceThe hydrolytic stability of ionomer membranes is a matter of concern for the l...
International audienceProton-conducting ionomers are widespread materials for application in electro...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
To develop a durable proton-exchange membrane (PEM) for fuel-cell applications, a series of sulfonat...
Proton-conducting ionomers are widespread materials for application in electrochemical energy storag...
The performances of polyarylene ethers and sulfonated polyarylene ethers having different backbone s...
La dégradation accélérée des membranes conductrices protoniques en pile est en partie due à une oxyd...
Fuel cells are considered as a promising alternative environmentally benign power source to the exis...
Sulfonated poly(etheretherketone) (SPEEK), with 577 g per equivalent proton, was made by the direct ...
Sulfonated poly(etheretherketone) (SPEEK), with 577 g per equivalent proton, was made by the direct ...
Sulfonated aromatic polymers (SAP) are promising ionomer materials, however for applications a...
Composite membranes formed by sulfonated poly-ether-ether-ketone (SPEEK) and sulfonated and/or silyl...
The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of...
International audienceThe hydrolytic stability of ionomer membranes is a matter of concern for the l...
International audienceProton-conducting ionomers are widespread materials for application in electro...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
To develop a durable proton-exchange membrane (PEM) for fuel-cell applications, a series of sulfonat...
Proton-conducting ionomers are widespread materials for application in electrochemical energy storag...
The performances of polyarylene ethers and sulfonated polyarylene ethers having different backbone s...
La dégradation accélérée des membranes conductrices protoniques en pile est en partie due à une oxyd...
Fuel cells are considered as a promising alternative environmentally benign power source to the exis...
Sulfonated poly(etheretherketone) (SPEEK), with 577 g per equivalent proton, was made by the direct ...
Sulfonated poly(etheretherketone) (SPEEK), with 577 g per equivalent proton, was made by the direct ...
Sulfonated aromatic polymers (SAP) are promising ionomer materials, however for applications a...
Composite membranes formed by sulfonated poly-ether-ether-ketone (SPEEK) and sulfonated and/or silyl...