The synthesis of cation exchange membranes (CEMs) usually involves using organic solvents and/or a sulfonation process. In this study, green and scalable synthesis of high performance CEMs is achieved without organic solvents and sulfonation. The synthesis is carried out via in situ polymerization of lithium styrene sulfonate in a porous support. Different preparation procedures are developed and optimized. Functional sulfonate groups are successfully loaded onto and into the membrane support, as verified by FTIR. Besides, water plays an important role in membrane synthesis. By reducing the amount of water used, the ratio of functional polymers to the membrane support in the synthesized CEMs is increased. Therefore, the synthesized CEMs sho...
© 2014 Elsevier B.V. A novel cation exchange membrane (CEM) composed of a blend of polyvinylidene fl...
A new type of composite ion-exchange membrane of sulfonated polyethersulfone (sPES) and sulfonated m...
Thermal cross-linking in presence of residual solvent dimethylsulfoxide without any addition of cros...
Abstract: The synthesis of cation exchange membranes (CEMs) usually involves using organic solvents ...
Dataset supporting journal publication: Abstract: The synthesis of cation exchange membranes (CEMs)...
Dataset supporting journal publication: Abstract: The synthesis of cation exchange membranes (CEMs)...
Semi-homogeneous cation exchange membranes with superior ion exchange capacity (IEC) were synthesize...
Semihomogeneous cation exchange membranes with superior ion exchange capacity (IEC) were synthesized...
Cation exchange membranes (CEMs) are widely used in ion separation technologies. The development of ...
In the present work, a novel mixed matrix cation exchange membrane composed of sulfonated polyether ...
Polyethersulfone (PES) was sulfonated by chlorosulfonic acid and then used as the polymer matrix for...
With the classical sulfonation method of polystyrene-based strongly acidic cation exchange resins, p...
This research reports the synthesis of stable anion exchange membranes (AEMs) from brominated poly (...
A new route for the preparation of cation exchange membranes from polystyrene-polyisoprene-polystyre...
Homo- and both random and block copolyaramides of high molecular weights, with sulfonated moieties i...
© 2014 Elsevier B.V. A novel cation exchange membrane (CEM) composed of a blend of polyvinylidene fl...
A new type of composite ion-exchange membrane of sulfonated polyethersulfone (sPES) and sulfonated m...
Thermal cross-linking in presence of residual solvent dimethylsulfoxide without any addition of cros...
Abstract: The synthesis of cation exchange membranes (CEMs) usually involves using organic solvents ...
Dataset supporting journal publication: Abstract: The synthesis of cation exchange membranes (CEMs)...
Dataset supporting journal publication: Abstract: The synthesis of cation exchange membranes (CEMs)...
Semi-homogeneous cation exchange membranes with superior ion exchange capacity (IEC) were synthesize...
Semihomogeneous cation exchange membranes with superior ion exchange capacity (IEC) were synthesized...
Cation exchange membranes (CEMs) are widely used in ion separation technologies. The development of ...
In the present work, a novel mixed matrix cation exchange membrane composed of sulfonated polyether ...
Polyethersulfone (PES) was sulfonated by chlorosulfonic acid and then used as the polymer matrix for...
With the classical sulfonation method of polystyrene-based strongly acidic cation exchange resins, p...
This research reports the synthesis of stable anion exchange membranes (AEMs) from brominated poly (...
A new route for the preparation of cation exchange membranes from polystyrene-polyisoprene-polystyre...
Homo- and both random and block copolyaramides of high molecular weights, with sulfonated moieties i...
© 2014 Elsevier B.V. A novel cation exchange membrane (CEM) composed of a blend of polyvinylidene fl...
A new type of composite ion-exchange membrane of sulfonated polyethersulfone (sPES) and sulfonated m...
Thermal cross-linking in presence of residual solvent dimethylsulfoxide without any addition of cros...