Project Grant 2533603
- Federal Project Grant Summary Florida State University received a $350,000 Project Grant from the National Science Foundation's Division of Chemistry under the Mathematical and Physical Sciences (CFDA 47.049) program, effective August 1, 2025 through July 31, 2028. This collaborative research initiative, led by Professors Biwu Ma and Bin Ouyang at Florida State University in partnership with Professor Lin X. Chen at Northwestern University, investigates the excited-state dynamics of organic...
- Federal Grant Award Summary Florida State University received a $452,542 Project Grant from the National Science Foundation's Division of Chemistry under the Mathematical and Physical Sciences program (CFDA 47.049), effective September 1, 2025 through August 31, 2028. Under the direction of Professor Oliver Steinbock, the funded research investigates diffusiophoretic micromotors—nano- and micro-particles driven by solute concentration gradients—within self-organizing reaction-diffusion...
- Federal Project Grant Award Summary Florida State University's Sponsored Research Administration Division received a $414,094 Project Grant from the National Science Foundation (NSF) Division of Materials Research under the Mathematical and Physical Sciences program (CFDA 47.049) beginning July 1, 2026, with a completion date of June 30, 2029. The award funds collaborative research investigating nonreciprocal transport phenomena in hybrid chiral crystals—symmetry-breaking materials with...
- Federal Project Grant Award Summary Award Details: Florida State University's Sponsored Research Administration Division received a $560,862 Project Grant from the National Science Foundation (NSF) Division of Materials Research under the Mathematical and Physical Sciences program (CFDA 47.049). The award is effective from July 1, 2026, through June 30, 2029. Products and Services: The award funds research on polyelectrolyte complex coacervates, specifically investigating how charge pairing in...
- Federal Project Grant Award Summary Florida State University received $185,906 from the National Science Foundation (NSF) Division of Physics under the Mathematical and Physical Sciences program (CFDA 47.049) effective October 1, 2026, with completion targeted for September 30, 2029. The award funds collaborative research to develop the Analysis Collaborative Ecosystem for High Energy Physics (ACEHEP), a unifying software system designed to improve Large Hadron Collider (LHC) data analysis....
- Federal Project Grant Award Summary Florida State University's Sponsored Research Administration Division received a $360,000 CAREER (Faculty Early Career Development) Project Grant from the National Science Foundation (NSF) Division of Materials Research under the Mathematical and Physical Sciences program (CFDA 47.049), effective June 1, 2026 through May 31, 2031. The award funds fundamental research into electronic and optical phenomena in moiré materials—engineered materials with...
- Federal Grant Award Summary Florida State University's Sponsored Research Administration Division received a $500,000 Project Grant from the National Science Foundation (NSF) Division of Materials Research under the Mathematical and Physical Sciences program (CFDA 47.049), awarded July 15, 2026, with completion targeted for June 30, 2029. The project, titled "Directing the Synthesis of Complex Materials from Metal Fluxes," delivers fundamental research and development in materials...
- Federal Project Grant Award Summary The University of Florida's Division of Sponsored Research received a $459,734 Project Grant from the National Science Foundation (NSF) Division of Materials Research under the Mathematical and Physical Sciences (CFDA 47.049) program, effective September 1, 2025, through August 31, 2028. This award supports fundamental research investigating novel phenomena in Coulomb-coupled Luttinger liquids, specifically examining how electron interactions behave in coupled...
- Federal Project Grant Award Summary Florida State University received a $344,349 project grant from the National Science Foundation's Division of Materials Research under the Mathematical and Physical Sciences program (CFDA 47.049) effective October 1, 2025, through September 30, 2028. The award supports fundamental research to advance understanding of high-entropy metal oxides (HEMOs)—multicomponent materials containing four or more metal elements in near-equimolar ratios—and their synthesis...
- Federal Grant Award Summary Florida State University received a $108,000 Project Grant from the National Science Foundation's Division of Mathematical Sciences (CFDA 47.049: Mathematical and Physical Sciences) awarded on August 15, 2025, with a completion date of July 31, 2027. The grant supports research on motivic, stringy, and Gromov-Witten invariants in algebraic geometry, with a focus on understanding singularities—sharp or pointy irregularities in geometric varieties—that arise in...
Award Overview Florida State University's Sponsored Research Administration Division received a $544,501 Project Grant from the National Science Foundation (NSF) Division of Chemistry under the Mathematical and Physical Sciences program (CFDA 47.049), effective July 15, 2026, through June 30, 2029. Dr. Eugene DeprincE leads development of theoretical tools and computational methods for simulating molecular properties strongly coupled to light within optical cavities, addressing a critical gap in existing computational capabilities for cavity quantum electrodynamics (QED) applications. Deliverables and Products The project will produce three primary deliverables: (1) cavity QED generalizations of standard electronic structure methods, including coupled-cluster and density functional theory-based response theories for high-order molecular response properties; (2) open-source software implementing these computational methods, released freely for public use; and (3) free online educational materials for quantum chemistry and computer science curricula. The research aims to enable rational design of polariton-based technologies with applications in quantum information science, light harvesting, and superconductivity. Methodological work will prioritize achieving many-body molecular response theory calculations for cavity QED while maintaining computational costs comparable to standard non-QED calculations, with development of electron-photon exchange-correlation functionals to accurately reproduce cavity-induced molecular property changes.Federal Project Grant Award Summary
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $544.5k | 7/14/26 |