Energy Chemistry & Solid-State Battery Storage Facility
Advancing solid-state battery chemistry and energy storage materials for next-generation power systems.
Research Mission
The Energy Chemistry & Solid-State Battery Storage Facility develops next-generation energy storage materials and systems — with particular focus on solid-state batteries, advanced electrode materials, and solid electrolytes that overcome the safety and energy density limitations of conventional lithium-ion technology. The facility conducts materials synthesis, electrochemical characterization, and cell engineering to advance solid-state battery technology toward operational deployment in defense, humanitarian, and civilian applications.
Key Research Functions
Solid Electrolyte Development
Synthesizing and characterizing solid electrolyte materials — sulfides, oxides, and polymer composites — with the ionic conductivity, electrochemical stability, and processability needed for practical solid-state battery applications.
Cell Engineering
Engineering solid-state battery cells from optimized electrode and electrolyte materials — developing fabrication processes, interface engineering strategies, and cell architectures that achieve target energy density and cycle life.
Safety Characterization
Characterizing the thermal and electrochemical safety of solid-state battery systems — evaluating abuse tolerance, failure modes, and thermal management requirements to ensure safe deployment in operational environments.
Research Capabilities
Directorate of Advanced Research & Applied Sciences
Join This Research Unit
Pacific 7.0 International recruits scientists, engineers, and researchers committed to advancing knowledge in service of global security and humanitarian protection.
