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Solid-state batteries hold the promise of providing energy storage
with high volumetric and gravimetric energy densities at high power
densities, yet with far less safety issues relative to those
associated with conventional liquid or gel-based lithium-ion
batteries. Solid-state batteries are envisioned to be useful for a
broad spectrum of energy storage applications, including powering
automobiles and portable electronic devices, as well as stationary
storage and load-leveling of renewably generated energy. This
comprehensive handbook covers a wide range of topics related to
solid-state batteries, including advanced enabling characterization
techniques, fundamentals of solid-state systems, novel solid
electrolyte systems, interfaces, cell-level studies, and
three-dimensional architectures. It is directed at physicists,
chemists, materials scientists, electrochemists, electrical
engineers, battery technologists, and evaluators of present and
future generations of power sources. This handbook serves as a
reference text providing state-of-the-art reviews on solid-state
battery technologies, as well as providing insights into likely
future developments in the field. It is extensively annotated with
comprehensive references useful to the student and practitioners in
the field.
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