Discover how Macro ATR-FTIR imaging technology is revolutionizing our understanding of soil organic matter dynamics and creating a healthier planet.
Discover how scientists use time-resolved hard X-ray photoelectron spectroscopy (TR-HAXPES) to film electron movements at femtosecond timescales.
Discover how CycleGAN AI is revolutionizing materials science by predicting atomic stress fields from sparse, incomplete data, enabling the design of stronger and more efficient materials.
Breakthrough in Raman spectroscopy allows capturing clear snapshots of single molecules' vibrations at room temperature using innovative freeze-frame technique.
Explore how computational power and high-entropy nanoparticles are revolutionizing materials science through atom-by-atom design and simulation.
Explore how molecular dynamics simulations reveal the hidden effects of ions on proteins and DNA, revolutionizing drug design and materials science.
Discover how pyrexMD, a powerful Python package, is revolutionizing molecular dynamics simulations to unlock the secrets of protein folding and disease mechanisms.
Explore the fascinating world of colloids and interfaces in life sciences and bionanotechnology, from everyday examples to cutting-edge research applications.
Discover how transfer-NOESY revealed the molecular structure of oxytocin bound to neurophysin, advancing our understanding of hormone delivery systems.
A progress report on atomic and molecular sciences from April 1981 to March 1982, highlighting breakthroughs in laser cooling and quantum physics.