CHALLENGE
Challenge
Next-generation batteries need higher energy density, stronger safety, and longer life without sacrificing manufacturability.
Next-Generation Rechargeable Battery Strategic Technologies…
IMMS Core Projects (CP1–CP4) are cross-cutting research programs that integrate efforts across Technical Groups and shared Platforms to achieve breakthrough ou…
Next-generation battery materials and systems with enhanced energy density, safety, and durability.
Next-generation battery materials and systems with enhanced energy density, safety, and durability.
CHALLENGE
Next-generation batteries need higher energy density, stronger safety, and longer life without sacrificing manufacturability.
RESEARCH GOAL
Advance rechargeable battery materials, interfaces, and systems through multiscale analysis and AI-assisted design.
RESEARCH PROGRAM
<p>CP4 targets the development of next-generation battery materials and systems with enhanced energy density, safety, and durability. It tackles advanced battery challenges by integrating the design of materials, interfaces, and system architectures, focusing on high-energy-density materials, structural stability, and optimized electrochemical performance.
CP4 addresses fundamental and applied challenges in advanced battery technologies through the integrated design of materials, interfaces, and system architectures. Through AI-assisted optimization and automated experimentation, CP4 aims to accelerate battery development cycles while improving reproducibility and scalability.
TG COLLABORATION
This project is currently presented as a framework-wide mission without a single registered TG owner.
PLATFORMS
EXPECTED OUTCOMES
Battery materials and cell-level concepts that improve energy density, safety, durability, and validation speed.