AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer electrolyte fuel cells. In particular, it focuses on the development of novel sulfonated aromatic hydrocarbon polymers for PEMs as alternatives to conventional perfluorinated polymers. It is necessary to improve proton conductivity especially under low-humidity conditions at high operating temperatures to breakthrough the current aromatic PEM system. Capable strategies involve the formation of well-connected proton channels by microphase separation between hydrophilic and hydrophobic domains and the increase of the ion exchange capacity of PEMs while keeping water resistance. Herein, we introduce novel molecular designs of sulfonated aromatic...
Polysulfone main chains have been functionalized with hypersulfonated aromatic side chains where the...
Ion-conducting polymer membranes (proton exchange and anion exchange membranes) are a key component ...
Approximately 10% of the global energy demand is currently satisfied by renewable resources. To meet...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
This review summarizes efforts in developing sulfonated hydrocarbon proton exchange membranes (PEMs)...
Polymer electrolyte membrane fuel cell (PEMFC) is an eco-friendly energy conversion device that can ...
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...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
Abstract The transport properties and the swelling behaviour of NAFION and different sulfonated poly...
Proton exchange membrane fuel cells (PEMFCs) employing proton conducting membranes are promising pow...
The goal of this work was to develop a composite proton exchange membrane utilizing 1) readily avail...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
This paper examines polymer film morphology and several important properties of polyethylene-graft-s...
Polysulfone main chains have been functionalized with hypersulfonated aromatic side chains where the...
Ion-conducting polymer membranes (proton exchange and anion exchange membranes) are a key component ...
Approximately 10% of the global energy demand is currently satisfied by renewable resources. To meet...
AbstractThis article reviews recent studies on proton exchange membrane (PEM) materials for polymer ...
This review summarizes efforts in developing sulfonated hydrocarbon proton exchange membranes (PEMs)...
Polymer electrolyte membrane fuel cell (PEMFC) is an eco-friendly energy conversion device that can ...
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...
Durable polymers functionalized with acidic or basic groups are currently developed for proton- or a...
The proton exchange membrane fuel cell (PEMFC) is currently emerging as an efficient and environment...
Abstract The transport properties and the swelling behaviour of NAFION and different sulfonated poly...
Proton exchange membrane fuel cells (PEMFCs) employing proton conducting membranes are promising pow...
The goal of this work was to develop a composite proton exchange membrane utilizing 1) readily avail...
As a key component of proton-exchange-membrane fuel cells (PEMFCs), proton-exchange membranes (PEMs)...
This paper examines polymer film morphology and several important properties of polyethylene-graft-s...
Polysulfone main chains have been functionalized with hypersulfonated aromatic side chains where the...
Ion-conducting polymer membranes (proton exchange and anion exchange membranes) are a key component ...
Approximately 10% of the global energy demand is currently satisfied by renewable resources. To meet...