Project Grant 2247482
- This Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports research by Professor Claudia Turro at The Ohio State University, in collaboration with Professor Jeremy Kodanko at Wayne State University. The $600,000 award aims to investigate the early-stage photophysical processes in Ruthenium(II) complexes, which have applications in solar energy conversion and phototherapeutic drug delivery. The research includes...
- This Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences (CFDA 47.049) program provides $510,000 to the University of Virginia to develop advanced chemical synthesis methods for producing nanocrystals with non-precious metal cores and thin, ordered intermetallic shells. The project aims to address challenges in nanochemistry by enhancing the fundamental understanding of the chemical processes involved in creating these complex inorganic...
- This National Science Foundation (NSF) Project Grant under the Mathematical and Physical Sciences (CFDA 47.049) program provides $383,627 to Illinois State University's Department of Research and Sponsored Programs to support research on the organometallic chemistry of rhenium-based cluster complexes containing alkynyl ligands. The 3-year award period runs from July 1, 2024 to June 30, 2027. The principal investigator, Professor Lisa Szczepura, will develop synthetic methodologies to prepare and...
- This federal Project Grant award, provided by the National Science Foundation (NSF) through the Mathematical and Physical Sciences program (CFDA 47.049), supports a research project led by Pere Miró at the University of Iowa. The project aims to use advanced computational approaches to understand the nucleation and growth of functionalized polyoxovanadate-alkoxide clusters, as well as their catalytic properties for small molecule reactions. Specifically, the $278,243 award will fund high-level...
- Under a $595,000 Project Grant from the National Science Foundation's Mathematical and Physical Sciences (CFDA 47.049) program, Professor Thomas Lectka of Johns Hopkins University will pursue two complementary strategies to selectively modify specific carbon-hydrogen or carbon-carbon bonds within complex molecular structures. The first approach will utilize hydrogen bonding to direct site-selective functionalization reactions, while the second will leverage metal ion binding to deactivate...
- This $312,307 Project Grant award from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) supports a collaborative research project between the University of Tennessee-Knoxville and the University of California-Davis. The researchers will study and develop new methodology to improve the efficiency and functionality of rhodium-based catalysts for organic transformations. The project aims to uncover new concepts in catalyst control by investigating remote...
- This $600,000 Project Grant awarded by the National Science Foundation's (NSF) Mathematical and Physical Sciences (MPS) program supports research by Professor Ramesh Jasti at the University of Oregon to harness the reactivity of strained macrocycles for the synthesis and fabrication of diverse carbon nanostructures. The overarching goals are to advance scientific knowledge, develop new materials with unique photophysical and electronic properties, and train the next generation of synthetic...
- This Project Grant from the National Science Foundation's Mathematical and Physical Sciences program provides $957,580 to Florida State University from July 2022 through June 2025 to develop and study new organic metal halide hybrid materials with unique crystalline structures. Specifically, Professor Biwu Ma and his research team will focus on designing and synthesizing "zero-dimensional" organic metal halide hybrids containing both insulating and semiconducting organic components...
- This Project Grant from the National Science Foundation Division of Chemistry, under the Mathematical and Physical Sciences program (CFDA 47.049), provides $353,295 to the University of Tennessee from August 1, 2022 to July 31, 2025. The funding supports research by Dr. Sirius Laursen and students to develop inexpensive, earth-abundant catalysts from non-noble metal intermetallic compounds for the conversion of waste from biomass processing into valuable diols and olefins. Through quantum...
- Federal Grant Award Summary Under this Project Grant awarded by the National Science Foundation's Division of Chemistry within the Mathematical and Physical Sciences program (CFDA 47.049), the University of Florida's Zeng Research Group will develop generalizable methodologies for the precision synthesis of atomically precise II-VI semiconductor nanoclusters through cation exchange reactions. The three-year project, funded at $482,663 and running from July 1, 2025 through June 30, 2028,...
RUI: CAS: SOLVENT-FREE SYNTHESIS OF TRANSITION METAL HALIDE CLUSTERS -WITH THE SUPPORT OF THE CHEMICAL SYNTHESIS PROGRAM IN THE DIVISION OF CHEMISTRY, PROFESSOR DEAN JOHNSTON OF OTTERBEIN UNIVERSITY WILL DEVELOP NEW SYNTHETIC ROUTES TO SUBSTITUTED TRANSITION METAL HALIDE CLUSTER MATERIALS THAT HAVE POTENTIAL FUTURE APPLICATIONS IN BIOIMAGING, LIQUID CRYSTAL AND OPTICAL DEVICES, CATALYSIS, OXYGEN SENSING, AND AS X-RAY CONTRAST AGENTS. THIS FAMILY OF CLUSTERS IS STRONGLY PHOSPHORESCENT AND HAS UNIQUE ELECTROCHEMICAL PROPERTIES, MAKING THE CLUSTERS POTENTIALLY USEFUL FOR A WIDE RANGE OF APPLICATIONS. THE CENTRAL CLUSTER CORE IS VERY STABLE, MAKING IT AN IDEAL BUILDING BLOCK FOR THE CREATION OF NEW CHEMICAL CONSTRUCTS THAT LINK CLUSTER UNITS TO FORM CHAINS OR THREE-DIMENSIONAL NETWORKS. IT IS IMPORTANT TO NOTE THAT CURRENT SOLUTION-BASED METHODS FOR PREPARING MODIFIED CLUSTERS ARE SEVERELY LIMITED BY THE REACTIVITY AND SOLUBILITY OF THE PRODUCTS, RESTRICTING THE TYPES OF MATERIALS THAT CAN BE GENERATED AND ISOLATED. THIS PROJECT SEEKS TO OVERCOME OBSTACLES ASSOCIATED WITH CURRENT SYNTHETIC TECHNIQUES. THE RESEARCH TEAM WILL USE THERMAL HEATING AND MECHANICAL GRINDING OF METAL CLUSTER SALTS TO PREPARE NOVEL MATERIALS WITH POTENTIAL APPLICATIONS FOR OPTICAL DEVICES AND SENSING. UNDERGRADUATE STUDENTS AT OTTERBEIN UNIVERSITY WILL ENGAGE WITH THIS PROJECT THROUGH SUMMER RESEARCH EXPERIENCES AND ACTIVITIES INTEGRATED INTO THE INORGANIC CHEMISTRY LABORATORY, GAINING VALUABLE EXPERIENCE IN INDEPENDENT RESEARCH AND THE SYNTHESIS AND CHARACTERIZATION OF INORGANIC MATERIALS. THESE RESEARCH EXPERIENCES WILL COMPLEMENT THE ACTIVITIES OF THE CARDINAL SCIENCE SCHOLARS PROGRAM, AN NSF-SUPPORTED PROGRAM OF ACADEMIC, CO-CURRICULAR, AND NON-ACADEMIC ACTIVITIES DEMONSTRATED TO INCREASE RETENTION AND GRADUATION IN SCIENCE, TECHNOLOGY, ENGINEERING, AND MATHEMATICS (STEM). THIS RESEARCH PROJECT IS DIRECTED TOWARD THE PREPARATION OF METAL CLUSTER SYNTHONS THAT ARE INTENDED TO SERVE AS BUILDING BLOCKS FOR NEW MOLECULES AND MATERIALS AND TO ALLOW FOR PRECISE CONTROL OVER CONNECTIVITY AND DIMENSIONALITY OF CLUSTER MATERIALS. GREATER THAN NINETY-FIVE PERCENT OF ALL KNOWN METAL HALIDE CLUSTER DERIVATIVES ARE HOMOLEPTIC, ILLUSTRATING THE DIFFICULTY IN SELECTIVE LIGAND SUBSTITUTION USING SOLUTION-BASED SYNTHETIC ROUTES. THE JOHNSTON RESEARCH TEAM WILL PREPARE METAL HALIDE CLUSTER SALTS WHERE THE CATION IS SELECTED TO REACT WITH THE ANIONIC CLUSTER, USING CHARGE BALANCE AND THE PROPERTIES OF THE CATION TO CONTROL THE STOICHIOMETRY OF THE REACTION. REACTIONS WILL BE INITIATED BY THERMAL OR MECHANOCHEMICAL MEANS IN THE ABSENCE OF SOLVENT, THEREBY AVOIDING COMPLICATIONS FROM SOLVENT INTERFERENCE OR SOLUBILITY ISSUES. THE REACTIONS AND PRODUCTS WILL BE ANALYZED USING THERMOGRAVIMETRIC ANALYSIS, IN-SITU RAMAN SPECTROSCOPY, AND POWDER AND SINGLE-CRYSTAL X-RAY DIFFRACTION METHODS. THE RESULTS OF THIS RESEARCH ARE EXPECTED TO PROVIDE RESEARCHERS IN THE FIELD OF INORGANIC CLUSTER CHEMISTRY WITH SYNTHETIC TOOLS AND PATHWAYS TO PREPARE NEW CLUSTER-BASED MATERIALS. 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.
Mod # | Description | ReasonForModification | Federal Obligation | Date |
|---|---|---|---|---|
| Not listed | $271.2k | 4/3/23 |