DOE OSTI · 1827690
Solid State Ionics: Materials Development by Multiscale Modeling and Advanced Manufacturing Techniques
Abstract
Solid-state ionic materials are an important enabling technology for energy conversion and storage. Solid-state batteries would be a safer and higher energy density alternative to commercially available lithium ion batteries (LIB), however their implementation requires ion conduction in solids at room temperature to occur on the same level as the current generation of liquid electrolytes. Microstructural modifications have been demonstrated to play a major role on ion transport through the control of grain boundary interfaces, which traditionally serve as “blocking” layers. Ultimately, these materials will be fabricated in thin films form as electrolytes in order to minimize ohmic losses in electrochemical devices. This work uses advanced manufacturing techniques in combination with theoretical modeling to implement a science-based approach in the deposition of thin films ion conductors with controlled microstructures used in ceramic energy conversion and storage devices.
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Roy, Lindsay E.. 2021-10-14. Solid State Ionics: Materials Development by Multiscale Modeling and Advanced Manufacturing Techniques. https://doi.org/10.2172/1827690
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