Now, researchers at the Max Planck Institute for Sustainable Materials (MPI-SusMat) have uncovered exactly how these microscopic defects trigger battery failure. Their findings, published in Nature, provide new insight into one of the most important challenges facing next-generation energy storage.
Unlike conventional lithium-ion batteries, which rely on a liquid electrolyte to move ions between electrodes, solid-state batteries use a solid ceramic electrolyte. Eliminating the liquid component offers several advantages. Solid-state designs can potentially store more energy in the same amount of space, reduce fire risks, and remain functional for longer periods.
The technology has attracted enormous interest from automakers and electronics manufacturers because it could dramatically improve battery performance. In theory, smartphones could go days without charging, while electric vehicles could achieve driving ranges up to three times greater than current models.

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