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

Sustainable energy solutions via novel material engineering

Showing 337-348 of 409 articles

Exploring exciton diffusion lengths in organic photovoltaic materials for enhanced solar efficiency

Evaluating 10,000-year material stability of nuclear waste encapsulation under extreme conditions

Optimizing perovskite-silicon tandem cells through interface engineering for record-breaking efficiencies

Generative design optimization of fusion reactor components under plasma constraints

Investigating room-temperature superconductors using 2D material heterostructures

Self-healing urban concrete employing germanium-silicon strain engineering and bacterial calcification

Enhancing carbon capture efficiency via perovskite-based membranes with tunable pore architectures

Optimizing artificial photosynthesis efficiency in femtoliter volumes via plasmonic nanostructures

Enhancing carbon capture efficiency through mechanochemical reactions in porous materials

Million-year nuclear waste isolation through 2D material heterostructure barriers

Developing 2030 materials for high-efficiency perovskite-silicon tandem solar cells

Enhancing solar cell efficiency via atomic precision defect engineering in perovskite materials