Oct 14, 2026, 11:00 AM – 12:00 PM
CheMat Seminar Series
Polyamide reverse osmosis (RO) membranes have been the gold standard for water desalination for over 30 years. Even though RO membranes exhibit excellent performance rejecting salt ions, they do not reject small, neutral molecules (SNMs) at adequate levels. Due to the fast, uncontrolled nature of the interfacial polymerization (IP) reaction used to fabricate polyamide RO membranes, the polyamide layer contains both crosslinked and un-crosslinked free volume holes (pores). Because SNMs are not affected by the charge exclusion rejection mechanism that allows for high salt rejection, reducing the free volume to reduce the passage of SNMs through the membrane is needed. Surfactants regulate IP via their self-assembled network to alter the behavior between the aqueous and organic phases. This leads to the formation of more permselective membranes with a more uniform polyamide density distribution. In this study, different anionic, cationic, and non-ionic surfactants have been employed during IP for polyamide membrane synthesis. Surfactant interfacial behavior was characterized, microscale visualization using the pendant drop was analyzed, and polyamide membranes were synthesized, characterized, and performance evaluated to understand how surfactants influence a variety of membrane properties. These results will help us synthesize better performing RO membranes for new applications.