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Sustainable energy solutions via novel material engineering

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Employing piezoelectric rain enhancement for drought mitigation in arid urban environments

Blending ancient materials science with nanotechnology for self-healing Roman concrete

Harvesting urban waste-heat thermoelectrics for decentralized microgrid energy resilience

Enhancing space-based solar power efficiency with adaptive photon harvesting materials

Enhancing battery longevity through perovskite-based solid-state electrolytes

Engineering self-heating mitigation strategies for 3nm semiconductor nodes

Synthesizing algebraic geometry with neural networks for advanced material design

Enhancing carbon capture efficiency via perovskite-based membranes with AI-driven optimization

Employing neglected mathematical tools for optimizing exciton diffusion lengths in organic photovoltaics

With 2025 cost reduction targets for perovskite solar cells via directed self-assembly of block copolymers

Considering 10,000-year material stability in nuclear waste encapsulation employing retrieval-augmented generation AI

Enhancing energy storage efficiency using magnetic skyrmion-based interconnects in solid-state batteries