Company claims that next-generation materials have four times the capacity of current anodes.
Single-photon emitter will improve quantum cryptography
Researchers have demonstrated a simpler, more efficient single-photon emitter that can be made using traditional semiconductor processing techniques.
Ultrafast logic gate from quantum dots
Researchers working to harness the quantum nature of light and semiconductors develop new logic system.
New bulk silicon nanosystem for electro-photonic applications
Research enables bulk silicon to emit broad-spectrum, visible light, opening the possibility of devices that have both electronic and photonic components.
Optical surface for new solar cells, computing, and sensing
New optical technologies using “metasurfaces” capable of the ultra-efficient control of light are nearing commercialization.
Room-temperature nanolasers developed by ASU researchers
Results pave the way for the use of nanolasers in a variety of practical applications.
A new porous material for carbon capture
Chemists at USF and KAUST have discovered a more efficient, less expensive and reusable material for carbon dioxide (CO2) capture and separation.
MOF material improves carbon dioxide scrubbing
Material investigated by USF and KAUST chemists could be a breakthrough in developing new tools for cleaner air and energy production.
New energy research center announced for Amagasaki, Japan
BASF intend to open new facility by the end of 2013.
Using nanowires and quantum dots to develop quantum computing
Recent research offers a new spin on using nanoscale semiconductor structures to build faster computers and electronics.