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Sustainable energy solutions via novel material engineering

Showing 13-24 of 409 articles

Exploring hydrogen storage efficiency in metal-organic frameworks under extreme cryogenic conditions

With ferroelectric hafnium oxide: enabling ultra-low-power non-volatile memory devices

Designing next-gen solar panels with 50-year durability requirements for space missions

Through million-year nuclear waste isolation using nanoscale ceramic coatings

Using waste-heat thermoelectrics to power IoT devices in industrial settings

Atomic precision defect engineering in perovskite solar cells with 50-year durability requirements

Autonomous lab assistants for accelerated discovery of solid-state batteries with 15-year ROI horizons

Engineering synthetic phyllosilicates for carbon-negative cement alternatives

Via perovskite-based carbon capture membranes for industrial emissions reduction

Employing neglected mathematical tools for optimizing quantum dot solar cell efficiency

Designing self-repairing infrastructure with 100-year maintenance cycles using bio-inspired materials

Planning post-2100 nuclear waste storage with self-healing concrete matrices