We generate insights on the dynamics of complex systems through experiments, theoretical analysis, and simulation. Aims of the research include enabling the efficient control and processing of these systems which are used in a wide range of industries, products, and emerging technologies.
Faculty
Dr. Rinaldi-Ramos’s research advances the fundamental science and biomedical application of magnetic nanoparticles, with a current emphasis on magnetic particle imaging (MPI) as a quantitative, noninvasive imaging platform for nanomedicine and cell therapy. His laboratory integrates nanoparticle synthesis and formulation, magnetic and physicochemical characterization, imaging physics, data analysis, and biological evaluation to develop MPI methods for quantitative tracking of nanoparticles and cell-based therapies.…
WE STUDY POLYMERS, PROTEINS, AND THEIR HYBRIDS TO DESIGN THE NEXT GENERATION OF SOFT MATERIALS using molecular dynamics simulations, high throughout computations, and enhanced sampling methods. To sustain materials discovery in the future given the limited resources at our disposal, predictive engineering techniques must be employed to allow for efficient design and optimization of materials.…