Advanced Battery Development

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Advanced Battery Development ( advanced-battery-development )

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III.C.2 Ultraviolet Curable Binder Lithium Ion Battery Project Tabacchi – NETL, Voelker – Miltec UV The Interim cells are 500 mAh pouch cells prepared by ANL. The cells coatings were comprised of 87% active material, 5% carbon and 8% binder. Cell test plans which include the testing limits and specifications for the interim cell validation tests such as voltage and current limits, state of charge, charging, and temperature recommendations, number of test sequences, and other appropriate test conditions were be delivered simultaneously with the 18 Interim cells. These tests are based upon full cell configuration using PHEV test procedure based on the USABC test profile Figure III - 79: Reference cell Figure III - 80: Initial charge and discharge Figure III - 81: 50 cycle performance Figure III - 82: Full cell 1000+ cycle 1C and 1/3C data demonstrate UV cathode binder is durable and electrochemically stable Figure III - 83: Half cell 1/3C data for anode with UV cured binder Planned Work for FY2014 During FY2014, research and development efforts will continue on the application of UV/EB cured binders in the fabrication of lithium ion battery anodes and cathodes. Optimum binder/anode and cathode material combinations will be subjected to testing in half coin cells, full coin cells, and full pouch cells during FY2014. Miltec UV will prepare and deliver 18 final design pouch cells to DOE for independent validation testing. The Miltec UV curing system and slot die coater will be operated and performance evaluated for both anode and cathode fabrication with a desired goal of demonstrating 150-200 feet per minute successful coating and UV curing of electrodes. Energy Storage R&D 94 FY 2013 Annual Progress Report

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