Advanced Battery Development

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Advanced Battery Development ( advanced-battery-development )

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Mixer – NETL, Eitouni – SEEO III.B.5 Solid Polymer Batteries for Electric Drive Vehicles electrochemical stability; improving conductivity and demonstrating long-term stability over cycle testing will be a focus of Phase III. Treated Li foil samples provided by Seeo’s project partner Hydro-Québec demonstrated a similar order of low impedance as that of the best performing commercial supplier tested. Replicating/improving this using thinner foils on the same production process is an ongoing activity; foils will be used as the anode for the project’s final deliverable cells. Conclusions and Future Directions In Phase I, Seeo’s baseline cells established the stability of Seeo’s solid polymer electrolyte system with high capacity Li anodes at a performance suitable for electric drive applications. In Phase II, Seeo focused on improving this baseline performance through incorporation of high-energy active materials and compatible solid electrolyte systems comprised of novel polymeric materials and conductive salts. In addition, Seeo investigated alternate techniques to stabilize high- voltage materials within a solid-state cell architecture. In Phase III, Seeo will isolate the most promising approach and deliver high-energy cells for testing to USABC protocol. It is challenging to achieve high energy densities alongside safety and long-term reliability using conventional, Li-ion cells that utilize liquid electrolytes. Seeo’s novel approach incorporates the inherent safety, speed of manufacturing and robust supply chain associated with solid polymer materials, thus offering a distinct opportunity to breakthrough traditional cost barriers associated with electric drive vehicle batteries. FY 2013 Publications/Presentation None. FY 2013 Annual Progress Report 81 Energy Storage R&D

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