Project Grant 2452280

Award Date 4/1/25
Completion Date 3/31/28
Dollars Obligated $300K
Federal Grant Program
47.049
Assistance Type
Project Grant
Place of Performance
Evanston, IL 60208, USA

This $300,000 Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences (MPS) program supports research at Northwestern University aimed at improving the understanding of ion transport in spatially-confined, electrically-charged environments. The research seeks to design biomimetic materials that can perform information and energy transference using ions as charge carriers within nanochannels. The project will develop molecular simulations and continuum theory to determine the relationship between memory effects and ionic microstructures in ion transport, as well as explore mechanisms to modify ionic conductivity in nanochannels. The goal is to uncover the underlying principles of ionic signaling to enable the design of ionic systems capable of storing and transferring information, with the potential to lay the foundation for the development of "ionic machines" - soft, adaptive materials that encode and process information using ionic currents. The award will also provide training for students and postdocs in this interdisciplinary field with applications in areas such as environmental science, biotechnology, and materials science.

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