Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous phase separation approach. The phase inversion process and morphology of the resultant membranes is expected to vary as function of these two parameters. Experiments: Polymeric membranes based on the responsive copolymer polystyrene-alt-maleic acid (PSaMA) are prepared using the aqueous phase separation approach and the influence of salt identity (Na2SO4, LiCl, NaCl, NaNO3, NH4Cl, MgCl2, CaCl2) and concentration on resultant membrane morphology and separation performance is investigated. Complementary stability experiments of PSaMA solutions are performed to help understand the intricate aqueous phase separation process. Findings: Specific ion e...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
In this work, polyelectrolyte mixing ratio is studied as a tuning parameter to control the charge, a...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
In recent work, Aqueous Phase Separation (APS) based on pH change induced polyelectrolyte complexati...
Aqueous Phase Separation (APS) provides a new and sustainable platform to fabricate polymeric membra...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
pH shift induced Aqueous phase separation (APS) is a novel and more sustainable water-based approach...
Nanofiltration separation efficiency depends on the membrane material as well as on the chemical nat...
Polymer membrane-based technologies have been successfully utilized for a variety of desalination ap...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
The classical Voorn-Overbeek thermodynamic theory of complexation and phase separation of oppositely...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
In this work, polyelectrolyte mixing ratio is studied as a tuning parameter to control the charge, a...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
In recent work, Aqueous Phase Separation (APS) based on pH change induced polyelectrolyte complexati...
Aqueous Phase Separation (APS) provides a new and sustainable platform to fabricate polymeric membra...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
pH shift induced Aqueous phase separation (APS) is a novel and more sustainable water-based approach...
Nanofiltration separation efficiency depends on the membrane material as well as on the chemical nat...
Polymer membrane-based technologies have been successfully utilized for a variety of desalination ap...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
The classical Voorn-Overbeek thermodynamic theory of complexation and phase separation of oppositely...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...