Project Grant 2418863
- Federal Project Grant Award Summary Bucknell University received a $182,922 Project Grant award from the National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences under the Mathematical and Physical Sciences program (CFDA 47.049), effective September 1, 2025, through November 30, 2026. Under this LEAPS-MPS (Launching Early-Career Academic Pathways) initiative managed by the Division of Chemistry's Broadening Participation program, Professor Agatemor and his research...
- This $600,000 National Science Foundation Division of Chemistry Project Grant supports research into elucidating exciton transport in hierarchical organic materials through time-resolved electronic and vibrational spectroscopy/microscopy. Led by researchers at Montana State University and the University of Miami, the award will fund investigation of energy transport in light-harvesting superstructures comprised of stacked aromatic dyes covalently bonded together with molecular tethers. By...
- The National Science Foundation's (NSF) Directorate for Mathematical and Physical Sciences awarded a $249,840 Project Grant to Professor Michael Enright and students at San Francisco State University. This LEAPS-MPS (Launching Early-Career Academic Pathways) program grant supports research focused on the design and development of efficient nanoscale catalysts capable of driving new photoredox processes. The project aims to quantify rates of exciton separation, hole quenching, and back electron...
- Federal Grant Award Summary The National Science Foundation's Division of Chemistry, under the Mathematical and Physical Sciences program (CFDA 47.049), awarded $249,965 to North Carolina Agricultural and Technical State University for the LEAPS-MPS (Launching Early-Career Academic Pathways) initiative. Under the direction of Professor Bangle, the project delivers research and educational services focused on advancing photocatalysis efficiency through field-driven upconversion technology. The...
- This Project Grant award, funded by the National Science Foundation (NSF) Division of Chemistry under the Mathematical and Physical Sciences grant program (CFDA 47.049), supports Professor Abigail G. Doyle at the University of California, Los Angeles (UCLA) in developing novel synthetic reactions that use visible light and photocatalysts to access high-energy, polar reactive intermediates. The $630,000 award will fund the development of several key transformations, including a desaturation...
- This Project Grant award from the Division of Chemistry at the National Science Foundation (CFDA 47.049 - Mathematical and Physical Sciences) provides $450,395 to the University of Illinois Chicago (UIC) to develop novel pro-aromatic heavy-atom-free organic chromophores for triplet photochemistry applications. The Principal Investigator, Dr. Jean-Luc Ayitou, will lead this research to exploit the intrinsic molecular properties of diketopyrrolopyrroles (DPP) and dipyrrolonaphthyridine-diones...
- Purdue University received a $450,000 Project Grant award from the National Science Foundation to develop new luminescent molecules for applications in organic light-emitting devices. Under the award, Professor Alexander Wei and his team will synthesize and study rigid metal-azole macrocycles and networks to correlate their structure with luminescent and color-switching properties. Specifically, the researchers aim to: 1) relate azole structure to the rigidochromism of corresponding copper...
- This project grant, awarded by the National Science Foundation's Directorate for Mathematical and Physical Sciences (CFDA 47.049) to San Jose State University Research Foundation, provides $249,999 to support fundamental research on interzeolite transformation (IZT) synthesis methods. The project, titled "LEAPS-MPS: Elucidating the Role of Seed Chemical Composition in Interzeolite Transformation Synthesis," runs from January 1, 2026 through December 31, 2027 and investigates how...
- The National Science Foundation (NSF) Directorate for Mathematical and Physical Sciences awarded a $125,000 project grant titled "LEAPS-MPS: Exploration and Development of Transition Metal Complexes and Their Application in Undergraduate Laboratory Settings" to the University of Puerto Rico at Cayey (UPR Cayey), a Hispanic Serving Institution. This grant, managed by the NSF Chemistry Division and co-funded through the Established Program to Stimulate Competitive Research (EPSCoR), will...
- This two-year, $151,647 Project Grant from the National Science Foundation's Integrative Activities program will support research into the assembly mechanisms of the oxygen-evolving complex in photosystem II. The principal investigator and one graduate student from Louisiana State University will conduct advanced electron paramagnetic resonance spectroscopy studies of photosystem II protein samples at the Argonne National Laboratory. They will gain experience with spectroscopic techniques and...
LEAPS-MPS: UNDERSTANDING CLUSTEROLUMINESCENT PRENYLATED DEEP EUTECTIC SOLVENTS -THIS AWARD IS BEING FUNDED BY THE MPS-LEAPS (LAUNCHING EARLY-CAREER ACADEMIC PATHWAYS) PROGRAM AND MANAGED BY THE BROADENING PARTICIPATION (CHE-BP) PROGRAM IN THE DIVISION OF CHEMISTRY. WITH THIS SUPPORT, PROFESSOR AGATEMOR AND HIS STUDENTS AT THE UNIVERSITY OF MIAMI INTEND TO DEVELOP AND INVESTIGATE PHOTOLUMINOPHORES THAT EMIT LIGHT IN AN AQUEOUS ENVIRONMENT USING BIOCOMPATIBLE AND ECO-FRIENDLY DEEP EUTECTIC SOLVENTS (DESS). PHOTOLUMINOPHORES, MOLECULAR ENTITIES THAT EMIT LIGHT AFTER ABSORBING PHOTONS, ARE USED IN MANY ASPECTS OF MODERN LIFE, INCLUDING MEDICINE, ENERGY, AND CHEMICAL SYNTHESIS. HOWEVER, MOST CURRENTLY USED PHOTOLUMIPHORES ARE TOXIC AND QUENCH THEIR EMISSION IN AN AQUEOUS ENVIRONMENT, LIMITING THEIR REAL-WORLD APPLICATIONS. SUCCESSFUL IMPLEMENTATION OF THE PROJECT DESCRIBED HERE COULD ENABLE A HOLISTIC DESCRIPTION OF PHOTOLUMINESCENCE AND POTENTIALLY LEAD TO THE DEVELOPMENT OF SUSTAINABLE SCIENCE AND TECHNOLOGIES, INCLUDING SOLAR ENERGY HARVESTING TECHNOLOGIES AND SOLAR PHOTOCHEMICAL SYNTHESIS PROCEDURES. PROFESSOR AGATEMOR WILL ALSO CONTRIBUTE TO STRENGTHEN DIVERSITY AND INCLUSION IN THE STEM COMMUNITY IN THIS PROJECT BY PROVIDING HANDS-ON TRAINING ON CHEMICAL SYNTHESIS, CHARACTERIZATION, AND CELL BIOLOGY TO STUDENTS FROM UNDERREPRESENTED GROUPS IN STEM, SPECIFICALLY AFRICAN AMERICAN AND HISPANIC UNDERGRADUATES. THE TRAINING OPPORTUNITY IS EXPECTED TO FOSTER STUDENTS' INTEREST IN STEM CAREERS THROUGH INTERACTION WITH POTENTIAL ROLE MODELS AND MENTORS. THE PROJECT AIMS TO INVESTIGATE THE MECHANISM BEHIND THE PHOTOLUMINESCENCE OF DESS. THE DESS WILL BE FACILELY SYNTHESIZED BY MIXING HYDROGEN BOND DONORS WITH ACCEPTORS IN DIFFERENT MOLAR RATIOS, ALLOWING CONTROL OF PHYSICO-CHEMICAL AND PHOTOPHYSICAL PROPERTIES. THE CENTRAL POSTULATION IS THAT MOLECULAR INTERACTIONS ARE IMPORTANT TO THE PHOTOLUMINESCENT BEHAVIOR OF THE DESS. THEREFORE, MOLECULAR INTERACTIONS, SUCH AS PI-PI AND HYDROGEN BOND INTERACTIONS, WITHIN THE DESS AND THE DES-WATER SYSTEM WILL BE ELUCIDATED USING VISCOMETRY, UV-VIS ABSORPTION SPECTROSCOPY, AND 1H-1H TWO-DIMENSIONAL MAGIC-ANGLE SPINNING NUCLEAR OVERHAUSER EFFECT SPECTROSCOPY. STEADY-STATE AND TIME-RESOLVED PHOTOLUMINESCENCE SPECTROSCOPIES WILL BE USED TO INVESTIGATE THE MECHANISM UNDERPINNING THE DES EMISSION IN AN AQUEOUS ENVIRONMENT. THE PHOTOCHEMISTRY OF THE DES WILL BE INVESTIGATED IN CELL CULTURE ASSAYS AND THROUGH PHOTOCHEMICAL SYNTHESIS PROTOCOLS. AN EXPECTED OUTCOME OF THE PROJECT IS TO ALLOW STUDENTS TO APPRECIATE THE POWER OF CHEMISTRY IN HARNESSING LIGHT FOR VARIOUS REAL-WORLD APPLICATIONS AND DEVELOP THE SKILLS FOR A SUCCESSFUL STEM CAREER. THIS AWARD REFLECTS NSF'S STATUTORY MISSION AND HAS BEEN DEEMED WORTHY OF SUPPORT THROUGH EVALUATION USING THE FOUNDATION'S INTELLECTUAL MERIT AND BROADER IMPACTS REVIEW CRITERIA.- SUBAWARDS ARE NOT PLANNED FOR THIS AWARD.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | ($183k) | 8/15/25 | ||
| Not listed | $250.0k | 7/8/24 |