Scientists are testing two promising ways to destroy PFAS, the stubborn “forever chemicals” that can accumulate in water and ...
A new study assesses whether Moon and Mars regolith simulants can support extraterrestrial construction, examining reactivity ...
Researchers at the Helmholtz-Zentrum Dresden-Rossendorf (HZDR) have developed two processes—hydrodynamic cavitation and cold ...
A Kookmin University research team has developed a technology for the scalable synthesis of highly uniform perovskite quantum ...
The recovery of bioactive compounds from food matrices and agri-food processing by-products is a cornerstone of sustainable ...
Co-designing electrolyte solvation and nanoscale layer spacing enables a continuous shift from battery-like sodium insertion ...
Hybrid bonding already works in production, but finer-pitch die-to-wafer integration must preserve fab-level surface and ...
From ocean waves and flowing rivers to the systems used to transport and treat water, vibrations are everywhere. But can ...
Chemists use single-electron transfers to synthesize complex, ring-shaped molecular structures found in many drug candidates ...
He received a 1992 Nobel Prize for developing a theory that explained fundamental processes behind photosynthesis, ...
This important study provides a mechanistic view of how antibody affinity maturation can reshape encounter-state landscapes and association pathways, with implications for understanding HIV antibody ...
All three kinesin transport families exhibit unexpectedly slow dissociation under load, explaining robust competition with dynein during bidirectional cargo transport.
Some results have been hidden because they may be inaccessible to you
Show inaccessible results