The driving force of the TRANSITION project is to make a central contribution to a more sustainable energy storage strategy in Germany. The markets for electromobility and stationary energy storage will grow significantly in the course of the energy turnaround and require more energy efficient and powerful storage technologies. Presently, lithium-ion batteries are one of the greatest successes for energy storage applications of the last century. LIBs are light, compact and offer outstanding energy and power density, dominating the market for portable electronics, hybrid and electric vehicles. “However, in view of the increasingly growing demand of lithium and raw materials employed in the lithium technology, such as cobalt, concerns has been raised about the future and long-term availability of the critical raw material and cost. In this scenario, sodium-ion batteries represent an alternative low cost and more environmentally friendly energy storage technology,says Professor Stefano Passerini, Director of HIU.
The TRANSITION project will focus on the development of powerful liquid and polymeric sodium-ion batteries employing layered transition metal oxides at the cathode side and biomass derived hard carbon at the anode side. “This is the first German consortium funded by the BMBF to work on the development of up-scaled sodium-ion batteries, covering a broad range of challenges from materials development to prototype cell fabrication, says Passerini. Within the project, his team will develop innovative biomass-derived hard carbon in combination with aqueous binders and aluminum as current collector.
The development of up-scaled sodium ion battery prototypes and the achievement of the desired goals represent a great challenge we can only meet in a network with the complementary competencies of the partners says Stefano Passerini. The team at the Friedrich-Schiller-University Jena (FSU) will coordinate the research activities toward the design of advanced liquid and polymeric electrolyte solutions, while the team at Center for Solar Energy and Hydrogen Research Baden-Württemberg (ZSW) will lead the cobalt free cathode development.