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Home > Impact > Funded Projects > Advancing 3D Architected Thick Electrodes for Next-Generation High-Performance Batteries
This research program proposes a scalable method to mass-produce architected thick battery electrodes with enhanced areal capacity and sustained capacity retention. By employing 3D porous interpenetrating electrodes with low tortuosity, it improves electron and ion transport, enabling thicker active material coatings without compromising performance. The design utilizes advanced nanomanufacturing techniques, including roll-to-roll and batch silicon manufacturing, to meet the rising demand for high-performance batteries, appealing to both academia and industry.