Related Experiment Video
Updated: Jul 13, 2026

Self-Assembly of Hybrid Lipid Membranes Doped with Hydrophobic Organic Molecules at the Water/Air Interface
Published on: May 1, 2020
Structure and dynamics of water near the interface with oligo(ethylene oxide) self-assembled monolayers
Ahmed E Ismail1, Gary S Grest, Mark J Stevens
1Sandia National Laboratories, Albuquerque, New Mexico 87185-1395, USA. aismail@sandia.gov
Abstract:
We performed molecular dynamics simulations of the oligo(ethylene oxide) (OEO) self-assembled monolayers in water to determine the nature of the systems' interfacial structure and dynamics. The density profiles, hydrogen bonding, and water dynamics are calculated as a function of the area per molecule A of OEO. At the highest coverages, the interface is hydrophobic, and a density drop is found at the interface. The interfacial region becomes more like bulk water as A increases. The OEO and water become progressively more mixed, and hydrogen bonding increases within the interfacial region. Water mobility is slower within the interfacial region, but not substantially. The implications of our results on the resistance of OEO SAMs to protein adsorption are discussed. Our principal result is that as A increases the increasingly waterlike interfacial region provides a more protein-resistant surface. This finding supports recent experimental measurements that protein resistance is maximal for less than full coverage on Au.
Related Concept Videos
Intermolecular Forces
Theories of Dissolution: The Danckwerts' Model and Interfacial Barrier Model
Cohesion
On a surface,...
Intermolecular Forces and Physical Properties
Colloids
Micelles

