pH shift induced Aqueous phase separation (APS) is a novel and more sustainable water-based approach to create microfiltration, ultrafiltration, and nanofiltration membranes. APS allows for control over membrane pore size and structure in ways analogous to traditional non-solvent induced phase separation (NIPS). Unfortunately, existing APS approaches require extreme pH shifts (from pH 14 to pH 1) to obtain successful membranes, limiting their applicability for large scale production. Here we demonstrate that APS membranes, with tunable pore sizes ranging from ~80 nm to dense nanofiltration type, can be prepared using a mild pH shift (pH 12 to pH 4) based on the complexation of poly(styrene sulfonate) (PSS) and branched polyethyleneimine (PE...
Hollow fiber (HF) membrane geometry is the preferred choice for most commercial membrane operations....
In this work, polyelectrolyte mixing ratio is studied as a tuning parameter to control the charge, a...
Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous pha...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
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...
The aqueous phase separation (APS) technique allows membrane fabrication without use of unsustainabl...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Hypothesis: Test Polymer membranes play a critical role in water treatment, chemical industry, and m...
Hollow fiber (HF) membrane geometry is the preferred choice for most commercial membrane operations....
In this work, polyelectrolyte mixing ratio is studied as a tuning parameter to control the charge, a...
Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous pha...
Nonsolvent induced phase separation (NIPS) is the most common approach to produce polymeric membrane...
Polymeric membranes are used on very large scales for drinking water production and kidney dialysis,...
Polymeric membranes are typically prepared using a technique known as the non-solvent induced phase ...
Aqueous phase separation (APS) is a recently developed sustainable alternative to the conventional o...
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...
The aqueous phase separation (APS) technique allows membrane fabrication without use of unsustainabl...
This thesis investigates and demonstrates how polymeric membranes can be prepared using the new and ...
Membranes are often used in environmentally friendly applications and as a sustainable alternative t...
Polymeric membranes are used on huge scales for kidney dialysis, wastewater treatment, and drinking ...
In the single-polyelectrolyte aqueous phase separation (APS) approach, membranes are prepared by pre...
Hypothesis: Test Polymer membranes play a critical role in water treatment, chemical industry, and m...
Hollow fiber (HF) membrane geometry is the preferred choice for most commercial membrane operations....
In this work, polyelectrolyte mixing ratio is studied as a tuning parameter to control the charge, a...
Hypothesis: Salt identity and concentration affects the preparation of membranes via the aqueous pha...