Project Grant 2154699

Award Date 5/1/22
Completion Date 4/30/25
Dollars Obligated $180K
Federal Grant Program
47.049
Assistance Type
Project Grant
Place of Performance
Fort Collins, CO 80521, USA
Similar Awards
This National Science Foundation project grant of $300,000 supports research into electrochemical nickel-catalyzed reductive biaryl coupling reactions from May 1, 2022 to April 30, 2025. The award funds a collaborative team from the University of Missouri-Kansas City, the University of Wisconsin-Madison, and Colorado State University under the Mathematical and Physical Sciences program (CFDA 47.049). Specifically, the team will use analytical, computational and electroanalytical tools to study...
This $600,000 National Science Foundation project grant supports collaborative research on electrochemical nickel-catalyzed reductive biaryl coupling between researchers at the University of Wisconsin-Madison, University of Missouri-Kansas City, and Colorado State University. The team will use analytical, computational, and electroanalytical tools to study the mechanistic details of these reactions and identify factors that enable lower-cost, more sustainable synthesis of chemicals useful in...
This Project Grant award from the National Science Foundation's Division of Chemistry, under the Mathematical and Physical Sciences Federal Grant Program (CFDA 47.049), supports collaborative research on electrochemical nickel-catalyzed reductive biaryl coupling. The research team, comprising professors from the University of Wisconsin-Madison, University of Missouri-Kansas City, and Colorado State University, will use a combination of stoichiometric organometallic studies, computational...
This $700,000 Project Grant, awarded by the National Science Foundation's (NSF) Mathematical and Physical Sciences Program (CFDA 47.049), supports a collaborative research effort led by professors at the University of Wisconsin-Madison, University of Missouri-Kansas City, and Colorado State University. The project aims to develop new analytical and computational tools to study the fundamental principles underlying nickel-catalyzed, electrochemically-driven biaryl synthesis - a process for...
This Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports collaborative research by professors at the University of Wisconsin-Madison, University of Missouri-Kansas City, and Colorado State University. The research team is studying new approaches to catalysis and electrochemistry for the synthesis of biaryl molecules, which are useful in polymers and agriculture. The $350,000 award, effective May 1, 2025 through...
Under a $529,170 award from the National Science Foundation's (NSF) Mathematical and Physical Sciences (MPS) program (CFDA 47.049), Professor Robert Paton and his research team at Colorado State University (CSU) will develop new computational workflows to accelerate the discovery and optimization of highly selective catalysts. The project aims to advance mechanistic understanding and establish new quantitative descriptors for three key catalyst and ligand classes - hydrogen-bond donors,...
This $208,879 Project Grant from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) supports collaborative research between Marquette University and the Colorado School of Mines to gain molecular-level insights into the catalytic mechanism of nitrile hydratase enzymes. Professors Bennett, Fiedler, and Holz will employ kinetic, spectroscopic, biochemical, computational, and X-ray crystallographic methods to detect intermediates, test competing mechanistic...
This $391,121 National Science Foundation project grant supports collaborative research between Marquette University and the Colorado School of Mines under the Mathematical and Physical Sciences program (CFDA 47.049). The three-year award will fund mechanistic studies of iron-type nitrile hydration catalysts through a combination of experimental and computational approaches. Researchers will employ kinetic, spectroscopic, biochemical, computational, and X-ray crystallographic methods to detect...
This $575,000 Project Grant award from the National Science Foundation's (NSF) Mathematical and Physical Sciences program (CFDA 47.049) supports a collaborative research project led by Professors Keary Engle of the Scripps Research Institute and Peng Liu of the University of Pittsburgh. The project focuses on developing new chemical reactions using earth-abundant nickel catalysts to efficiently synthesize valuable compounds, including medicinally relevant molecules, agrochemicals, and functional...
This $525,000 National Science Foundation project grant supports research at the University of California, Irvine to develop new nickel-catalyzed stereospecific cross-electrophiile coupling reactions from 2022-2025. Professor Elizabeth Jarvo and her team are studying nickel catalysis mechanisms to establish ligand features necessary to support one- and two-electron redox steps in cross-electrophiile coupling reactions. Their work seeks to provide useful late-stage functionalization strategies...

This three-year, $180,149 project grant from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) supports collaborative research on electrochemical nickel-catalyzed reductive biaryl coupling between researchers at the University of Wisconsin-Madison, University of Missouri-Kansas City, and Colorado State University. The team will use analytical, computational, and electroanalytical tools to study the mechanistic steps of these reactions and identify factors that influence catalyst identity, conditions, and applied potential. Insights gained will guide efforts to improve catalyst turnover number, frequency, and selectivity to enable commercial-scale electrochemical reductive biaryl synthesis in flow reactors. The research contributes to understanding nickel catalysis and electrosynthesis, with the aim of developing lower-cost, more sustainable alternatives to state-of-the-art biaryl syntheses utilizing nonselective oxidation or expensive precious metal catalysts. Colorado State University serves as the primary awardee and place of performance.

Generated 1/7/24, 10:49 AM