Project Grant 2500124

Award Date 2/15/25
Completion Date 1/31/27
Dollars Obligated $300K
Federal Grant Program
47.041
Assistance Type
Project Grant
Place of Performance
Pullman, WA 99164, USA
Similar Awards
The National Science Foundation (NSF) awarded a $638,566 Project Grant under the Engineering program (CFDA 47.041) to the University of Delaware. The grant supports a collaborative research effort to develop a computational-experimental methodology using machine learning to design stable, active, and selective single-atom catalysts for industrial applications. The project aims to uncover physics-inspired descriptors to predict how the support material properties influence the stability,...
This $335,964 Project Grant awarded by the National Science Foundation (NSF) Engineering program (CFDA 47.041) is funding a collaborative research project at Louisiana Tech University to study the stability and coke-resistance of platinum (Pt) nanolayer catalysts supported on molybdenum-titanium-carbon (MXene) materials. The goal is to advance the basic science of heterogeneous catalysis and provide insights to improve catalyst formulations and designs for the energy-intensive process of...
This National Science Foundation (NSF) Project Grant award under the Engineering program (CFDA 47.041) is providing $165,802 to Iowa State University to study the stability of a novel platinum nanolayer catalyst supported on molybdenum-titanium-carbon (MXene) materials. The research aims to advance fundamental understanding of how this catalyst system resists deactivation from carbon buildup ("coking") and particle agglomeration, which are key limitations of current catalysts used...
This $185,080 project grant from the National Science Foundation's Engineering program (CFDA 47.041) supports collaborative research between the University of Wisconsin-La Crosse and Purdue University to develop porous bi-layer catalysts for converting carbon dioxide into valuable products like ethylene at industrially relevant rates. The researchers will engineer novel layered catalyst structures combining specific metal/metal oxide heterostructures to reduce reaction overpotential and...
The National Science Foundation (NSF) awarded a $300,000 Project Grant under its Engineering program (CFDA 47.041) to William Marsh Rice University, doing business as Rice University, to develop new heterolytic C-H activation catalysts based on Au/metal oxide interfaces. The project aims to investigate how the composition of the metal oxide support can be tuned to maximize the catalytic activity for breaking carbon-hydrogen bonds, which is a key challenge in natural gas processing. The...
The National Science Foundation (NSF) awarded a $999,999 Project Grant under the Engineering program (CFDA 47.041) to the University of Houston System to conduct research on plasma-assisted catalysis for clean energy technologies. This interdisciplinary effort spanning materials science, electrical engineering, machine learning, and data analytics aims to advance the fundamental understanding of plasma-assisted chemical reactions and develop new methods for catalyst discovery and reactor...
This $600,000 National Science Foundation award through the Engineering program (CFDA 47.041) funds research at the University of Minnesota from January 2023 through December 2025. The project will develop an understanding of plasma-catalyzed reactions in confined spaces to enable near ambient temperature NOx reduction for automotive cold start emissions. Researchers will examine reaction and transport phenomena impacting the coupling of plasma and catalytic chemistry within capillary...
This National Science Foundation (NSF) Project Grant award, funded through the Mathematical and Physical Sciences program (CFDA 47.049), provides $424,350 to Duquesne University from September 1, 2023 to August 31, 2026. The project aims to design and discover energy-efficient, environmentally friendly, and cost-effective metal-free catalysts for the activation and conversion of small molecules, such as converting carbon dioxide to useful chemicals and fuels. The research approach combines...
This $602,669 Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) is funding research to develop novel bimetallic single-site heterogeneous catalysts for enhancing the reactivity of olefin metathesis. The goal is to lower the energy requirements and increase the reaction efficiency for producing propylene, a critical chemical feedstock, from other olefinic hydrocarbons. The research aims to: 1) determine the complete reaction mechanism for ethene...
This National Science Foundation (NSF) Engineering program grant, awarded to Trustees of the Colorado School of Mines (Colorado School of Mines) under CFDA 47.041, provides $386,077 to support a project to develop molecular imprinting atomic layer deposition techniques for creating microporous silica structures near active sites in mesoporous aluminosilicate catalysts. The goal is to induce confinement effects to enhance catalytic activity and selectivity for C-C coupling reactions,...

This National Science Foundation (NSF) Engineering program (CFDA 47.041) $300,000 EAGER grant awarded to Washington State University (WSU) will investigate a novel catalyst design aimed at reducing pollutants from gasoline- and diesel-fueled vehicles. The project will quantify the fluxionality (dynamic behavior) of copper oxide support structures for atomically dispersed platinum and rhodium catalysts, which have the potential to reduce the amount of expensive and strategic noble metals required to meet strict emissions regulations. The research will integrate global optimization algorithms and multi-scale computational models to better understand the structure and redox properties of the oxide supports under realistic reaction conditions. The outcomes will be incorporated into an educational program for undergraduate and graduate students. No subawards are planned under this award, which has a period of performance from February 15, 2025 to January 31, 2027.

Generated 4/8/25, 4:31 AM