This $600,000 National Science Foundation project grant in the Mathematical and Physical Sciences program (CFDA 47.049) supports research at the Massachusetts Institute of Technology to develop new methods for analyzing and optimizing polymer network structures. Professors Jeremiah A. Johnson and Bradley D. Olsen of MIT's Departments of Chemistry and Chemical Engineering will work to invent chemical strategies, theories, and simulations to provide deeper understanding of topology in...
The National Science Foundation (NSF) awarded a $510,000 Project Grant under the Mathematical and Physical Sciences (CFDA 47.049) federal grant program to the University of Chicago. The objective of this 3-year research project, starting on Jul 15, 2025, is to establish fundamental structure/processing/morphology/property relationships in a class of "pluripotent" polymer materials that can be tempered to access a wide range of room-temperature properties, from brittle and glassy to...
This National Science Foundation (NSF) Project Grant, funded under the Mathematical and Physical Sciences program (CFDA 47.049), aims to develop polymers with unprecedented mechanical properties and processibility for use in advanced applications like wearable sensors, soft actuators, and energy harvesting devices. The University of Texas at Dallas (UTD) is leading this collaborative $350,229 research effort, which uses a systematic, data-driven approach to create adaptive polymer networks...
This Project Grant award, valued at $450,000.00, was provided by the National Science Foundation (NSF) under the Mathematical and Physical Sciences Federal Grant Program (CFDA 47.049). The grant aims to advance fundamental science on the design of nanocomposite elastomers with controlled morphology and improved recyclability. The key objectives are to establish the scientific principles for designing covalently adaptive network elastomers with nanoparticle fillers, enabling structural control...
This Project Grant award of $421,781 from the National Science Foundation's Mathematical and Physical Sciences program (CFDA 47.049) supports the University of Chicago in developing advanced polymer materials with unprecedented mechanical properties and self-healing capabilities. The research aims to create an integrated database of adaptive polymer networks that are highly stretchable, resilient, and self-healing through the use of novel double-threaded slide-ring polymers and dynamic...
The National Science Foundation (NSF) awarded a $420,553 Project Grant under the Mathematical and Physical Sciences (CFDA 47.049) program to The Washington University in St. Louis. This collaborative research project aims to develop novel polymer materials with unprecedented mechanical properties and self-healing capabilities through an integrated experimental and computational approach. The key products and services to be delivered include: Pioneering the use of double-threaded slide-ring...
This is a $675,234 Project Grant awarded on August 1, 2024 by the National Science Foundation (NSF) under the Mathematical and Physical Sciences (MPS) program (CFDA 47.049). The grant recipient is the Texas A&M Engineering Experiment Station (Tees), a state government agency and institute of higher learning. The grant will fund research to develop a new class of "shape-morphing" polymer materials that can transform their shape in response to temperature changes, without requiring...
The National Science Foundation (NSF) Division of Chemistry awarded a $451,626 Project Grant to the University of Nevada, Reno (UNR) under the Mathematical and Physical Sciences program (CFDA 47.049). The three-year grant, which commenced on August 1, 2023, supports UNR's research into recyclable and dynamic covalent polymers known as polydithioacetals. Through this project, UNR aims to develop a detailed understanding of the polymerization mechanisms and thermodynamics of entropy-driven...
This National Science Foundation (NSF) Chemistry Division Project Grant, awarded to Duke University, provides $800,000 over 4 years (from September 1, 2023 to August 31, 2027) to study how mechanical forces can accelerate and control chemical reactions in polymeric materials. The primary objective is to establish a quantitative foundation for understanding "mechanochemistry" - the impact of mechanical forces on covalent chemical reactions along polymer backbones. The research aims to...
The National Science Foundation (NSF) awarded a 4-year, $400,000 Project Grant under the Mathematical and Physical Sciences program (CFDA 47.049) to Trustees of Boston University for their research project titled "COLLABORATIVE RESEARCH: DMREF: CLOSED-LOOP DESIGN OF POLYMERS WITH ADAPTIVE NETWORKS FOR EXTREME MECHANICS." The project aims to develop an integrated experimental and computational platform for accelerated discovery and design of novel polymers exhibiting unprecedented...