Atomfair Brainwave Hub: SciBase II / Renewable Energy and Sustainability / Sustainable energy solutions via novel material engineering

Sustainable energy solutions via novel material engineering

Showing 49-60 of 409 articles

Optimizing perovskite-based carbon capture membranes through biomimetic nanostructure patterning

Through failed experiment reanalysis: uncovering hidden superconductivity pathways in metallic hydrides

Optimizing perovskite-silicon tandem cells via interface engineering for ultra-high photovoltaic efficiency

Accelerating catalyst discovery for green hydrogen production through machine learning algorithms

Bridging fundamental and applied research in quantum dot solar cell efficiency

Designing post-2100 nuclear waste storage solutions with self-healing concrete technologies

Via atomic precision defect engineering to optimize high-temperature superconductor performance

Enhancing battery lifespan via mechanochemical reactions during high-stress cycling conditions

Designing self-healing materials for deep geological time applications in nuclear waste storage

Enhancing solar fuel production through photoredox chemistry with ferroelectric hafnium oxide

Optimizing tidal energy turbine arrays with atomic precision defect engineering

Optimizing redox flow battery efficiency via novel electrolyte formulations and membrane design