As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs) must continuously withstand very harsh environments during long-term fuel cell operations. With the coming commercialization of PEMFCs, investigations into the durability and degradation of PEMs are becoming more and more urgent and interesting. Herein, various recent attempts and achievements to improve the durability of sulfonated aromatic polymers (SAPs) are reviewed and some further developments are predicted. Extensive investigations into inexpensive SAPs as alternative electrolyte membranes include modification of available polymer materials; design, synthesis, and optimization of new macromolecules; durability testing; and exploring t...
International audienceThe publication deals with the sulfonation of aromatic polysulfones that resul...
The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of...
Fluorine-free aromatic ionomers are next generation materials for proton exchange membrane fuel cell...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
Fuel cells are considered as a promising alternative environmentally benign power source to the exis...
This review describes main strategies for the development of sulfonated aromatic polymers (SAP) with...
Sulfonated aromatic polymers (SAP) are promising ionomer materials, however for applications a...
To develop a durable proton-exchange membrane (PEM) for fuel-cell applications, a series of sulfonat...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
Sulfonated fully aromatic polymers with different positions of the acid groups, but with an identica...
This review summarizes efforts in developing sulfonated hydrocarbon proton exchange membranes (PEMs)...
International audienceThe publication deals with the sulfonation of aromatic polysulfones that resul...
The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of...
Fluorine-free aromatic ionomers are next generation materials for proton exchange membrane fuel cell...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
Fuel cells are considered as a promising alternative environmentally benign power source to the exis...
This review describes main strategies for the development of sulfonated aromatic polymers (SAP) with...
Sulfonated aromatic polymers (SAP) are promising ionomer materials, however for applications a...
To develop a durable proton-exchange membrane (PEM) for fuel-cell applications, a series of sulfonat...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
Sulfonated fully aromatic polymers with different positions of the acid groups, but with an identica...
This review summarizes efforts in developing sulfonated hydrocarbon proton exchange membranes (PEMs)...
International audienceThe publication deals with the sulfonation of aromatic polysulfones that resul...
The hydrolytic stability of ionomer membranes is a matter of concern for the long-term durability of...
Fluorine-free aromatic ionomers are next generation materials for proton exchange membrane fuel cell...