Innovative biomimetic surface films using phosphonic acid SAMs and catechol-functionalized PEG copolymers for low friction and high stability. Scalable, low-energy solutions for industrial applications.
This research presents a biomimetic approach to developing low-friction, stable surface films using phosphonic acid-based self-assembled monolayers (SAMs) and catechol-functionalized PEG bottlebrush copolymers. The technology is designed to provide scalable, low-energy solutions with excellent adhesion and low coefficients of friction (CoF), comparable to those of polytetrafluoroethylene (PTFE). These films are ideal for applications requiring durable, low-friction surfaces, such as biomedical devices and industrial machinery.
The technology is at TRL 3, indicating that active research and development are underway. Initial experimental setups and validation processes are in progress using tools like ellipsometers, XPS, goniometers, and SEM, with further testing planned for CoF and wear analysis.
The University of Alberta is a large, comprehensive public research university in Edmonton with multiple campuses and a strong applied research culture. Industry engages through co-located labs and pilot-scale facilities, as well as established co-op and internship programs that place talent with partners year-round. Integration with Alberta’s province-wide hospital system supports clinical research and accelerates translation. Companies also benefit from proximity to regional industry clusters and collaboration hubs on and near campus for joint R&D and prototyping. Supported by NSERC, CIHR, SSHRC, and Canada Foundation for Innovation funding—plus provincial and industry support—the tech transfer office manages IP, licensing, and startup formation with streamlined sponsored-research agreements.