The goal is to optimize the interactions between the different materials and components to enhance battery performance, stability and lifespan. It examines phenomena such as charge transfer, ion transport, interfacial reactions and the formation of protective layers or interfacial films. Interfacial science investigates the chemical, physical and electrochemical processes that occur where the electrode and electrolyte meet in a battery (the interface). Together, we are pushing the boundaries of knowledge and paving the way for a sustainable energy future.” “I’m grateful for the support of DOE, Argonne and my colleagues at both the Sustainable Power & Energy Center and at the Pritzker School of Molecular Engineering. This award not only acknowledges my contributions, but also highlights the interdisciplinary research conducted by the Laboratory for Energy Storage and Conversion team in addressing global energy challenges,” Meng said. “I’m deeply honored to have my work recognized by ECS. Meng will be formally recognized in October at the 244 th ECS Meeting in Gothenburg, Sweden. Her research focuses primarily on energy storage materials and systems, specifically rechargeable batteries for electric vehicles and trucks, power sources for the Internet of Things and grid-scale storage to facilitate the widespread integration of renewable energy sources. Department of Energy’s ( DOE) Argonne National Laboratory as the recipient of the 2023 Battery Division Research Award for innovative research on interfacial science, which has led to improved battery technologies.Ī pioneer in discovering and designing better materials for energy storage, Meng serves as chief scientist of the Argonne Collaborative Center for Energy Storage Science ( ACCESS) and as a professor at the Pritzker School of Molecular Engineering at The University of Chicago. The Electrochemical Society ( ECS) has selected scientist Shirley Meng of the U.S.
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