NSF transformed materials science from isolated research efforts into a powerful scientific enterprise that drives innovation across industry and everyday life
Medical ResearchTechnology & Innovation#U.S. National Science Foundation#Science Matters#medical research#clinical research#advanced materials#innovation
From targeted cancer treatments to self-healing materials and microscopic robots, many emerging technologies depend on molecules that can be controlled with light. Researchers at Tohoku University have now developed a way to make these light-responsive molecules much more sensitive to visible light by using a molecular antenna. The breakthrough gives scientist better control over molecular photosw
Medical ResearchTechnology & Innovation#Tohoku University#Research Releases#medical research#clinical research#advanced materials#innovation
Medical ResearchTechnology & Innovation#Kennesaw State University#research#News Releases#medical research#clinical research#advanced materials#innovation
With a twist between layers of graphene, scientists supported by the DOE’s Office of Science created the foundation for twistronics.
FeaturesSpace & AstronomyTechnology & Innovation#DOE#Office of Science#astronomy#astrophysics#advanced materials#innovation#Oak Ridge National Laboratory#Lawrence Berkeley National Laboratory
The BESIII Collaboration, led by the Institute of High Energy Physics of the Chinese Academy of Sciences, has achieved the world's most precise measurement of the electric dipole moment (EDM) of the Lambda (Λ) hyperon using quantum-entangled Λ–anti-Λ pairs produced in J/ψ decays. The result improves the experimental sensitivity by about three orders of magnitude compared with the previous measurem
Space & AstronomyTechnology & InnovationParticle Physics#Chinese Academy of Sciences#Research News#Particle Physics#astronomy#astrophysics#advanced materials#innovation#Fermilab