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Summary/Conclusions *We have achieved the high rate charge/discharge of the N2/N3- anode at 550 C by using Li3BN2 mediator. However materials problems inhibit further development of the N2/O2 battery at this temperature. *We have achieved N2 reduction at ambient temperature using a radical anion mediator inside a zeolite catalyst and on C3N4. Reaction rate is slow and product yield is low. Reversibility not yet tested. *Investigations of high energy mediators have yielded spinoff technologies: Mediated Redox Flow Batteries , F. Delnick, D. Ingersoll, C. Liang US Provisional Patent Application 61/947,7198 SD 13042 Electrolytes for High Energy Density Ultracapacitors, F. Delnick, J. Nanda, C-N. Sun, US Patent Disclosure 201303214 Membrane Separator for Redox Flow Batteries that Utilize Anion Radical Mediators, Technical Advance SD13270 Catalyst for Nitrogen Reduction at Ambient Conditions, F. Delnick, C. Liang, G. Veith, C. Narula, Provisional Patent SD-13272.0/S 136369 5PDF Image | Nitrogen Oxygen Battery A Transformational Architecture
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