This Project Grant award from the National Science Foundation (NSF) Engineering program (CFDA 47.041) to Arizona State University provides $620,013 to conduct fundamental research on additive manufacturing of novel structural batteries made with carbon fiber reinforced composites. The goal is to develop a novel coextrusion-based 3D printing process to integrate energy storage and structural load bearing functions into a single lightweight material for applications like electric transportation....
This National Science Foundation (NSF) Integrative Activities (CFDA 47.083) project grant award of $279,105 to the University of Alabama in Huntsville (UAH) aims to develop transformative solutions for enhancing the capabilities of electric vehicle battery management systems. The key products to be delivered include: An interconnected electro-thermal-aging model of a lithium-ion battery pack to better understand the interplay between electrical, thermal, and aging behavior and their impact on...
The Department of Energy's Office of Science awarded Structured Ions, LLC a $199,749 project grant under the Office of Science Financial Assistance Program (CFDA 81.049) on July 22, 2024. The grant funds the development of a multifunctional composite laminate-based structural battery for vehicle applications. The project aims to advance energy storage solutions through research, development, and prototyping, building upon Structured Ions' previous work on structural supercapacitors for aerospace...
This National Science Foundation (NSF) Engineering program (CFDA 47.041) Project Grant award of $549,771 to the University of Houston System will support research to develop pore-free composite materials for use in solid-state lithium metal batteries. The project aims to bridge knowledge gaps in forming and optimizing these materials, which are critical for enhancing the reliability and cost-effectiveness of solid-state lithium metal battery technology. The research will use automated in situ...
This $400,000 National Science Foundation project grant supports research at Virginia Polytechnic Institute and State University to develop novel bidirectional high-power DC-DC onboard electric vehicle battery chargers with ultra-high power density and scalability operating over 1 megahertz. The research aims to address key gaps including designing and demonstrating 1.2 kilovolt gallium nitride field-effect transistors for high-frequency power converters operating over 800 volts and 1...
The University of Illinois, Chicago was awarded a $1,300,000 Cooperative Agreement from the U.S. Department of Energy's Advanced Research Projects Agency - Energy (ARPA-E) to develop all solid-state Li-air technology for green high-performance transport. The project aims to advance the field of Li-air battery systems to manufacture batteries with energy density and power density exceeding 1,000 Wh/kg, 1,000 Wh/L, and 1,500 W/kg, targeting the requirements for all-electric aviation. Key...
The Advanced Research Projects Agency-Energy (ARPA-E) awarded a $1,874,838 Cooperative Agreement to Aurora Flight Sciences, a Boeing company, to develop an innovative aluminum (Al) air energy storage and power generation (ESPG) system. The goal is to meet ARPA-E's PROPEL 1K program targets for zero-emissions, high energy density, and high efficiency to enable electrification across the aviation, rail, maritime, and trucking industries. The project team, which includes the University of...
Am Batteries Inc. received a $256,000 Project Grant award from the National Science Foundation Division of Industrial Innovation under the Engineering federal grant program (CFDA 47.041) to develop a solvent-free manufacturing process for lithium-ion battery electrodes. The goal of the one-year project beginning February 1, 2022 is to design, manufacture, and operate a continuous feed dry spraying system to optimize fabrication of thicker battery electrodes without solvents. This novel...
The Department of Energy's Advanced Research Projects Agency-Energy (ARPA-E), under its Electric Vehicles for American Low-Carbon Living (EVS4ALL) program (CFDA 81.135), awarded a $2,976,210 Cooperative Agreement to The Ohio State University for the project "Extreme Fast Charging Batteries with Extended Cycle Life for EVs". The 3-year project aims to develop advanced battery technologies to enable electric vehicles with extended driving range and faster charging capabilities. As part...
This $1,000,000 Cooperative Agreement award from the National Science Foundation (NSF) Technology, Innovation, and Partnerships (CFDA 47.084) program supports the development of a highly conductive, solid battery separator membrane made of a new solid polymer electrolyte. The project, led by Piersica, Inc., a small disadvantaged business, aims to scale up the manufacturing of this new separator material and demonstrate its functionality in a multilayer pouch cell prototype. The key goals are...