World’s Most Efficient Nanowire Lasers
Materials with extraordinary performance in solar cells are discovered to be efficient, tunable lasers at room temperature.
Materials with extraordinary performance in solar cells are discovered to be efficient, tunable lasers at room temperature.
Three-dimensional structure of nanocrystals in solution determined with atomic resolution using a new technique.
New method to fabricate graphene nanoribbon arrays on semiconductor wafers turns semimetal into semiconductor.
Device allows fast, precise measurements of electric and magnetic fields at the atomic level, providing insights into the next generation of electronic, energy production, and storage materials.
This discovery could lead to low-cost, non-toxic, biological components for light-weight electronics.
Newly discovered “design rule” brings nature-inspired nanostructures one step closer.
Using tools that enable nuclear physics research into the heart of matter, scientists created a material for applications from aerospace to solar panels.
The neutron skin of the nucleus calcium-48 is much thinner than previously thought.
Herbivore digestion involves a large variety of enzymes that break woody plants into biofuel building blocks.
Surprising order found in bundles of protein filaments that move chaotically and form liquid crystals that could led to novel self-healing.
A family of single-phase materials was discovered with coexisting magnetic and electrical properties having potential for electronic applications.
Researchers use surface-sensitive signals to atomically resolve the structure of a rough surface.