Using Nanotubes to Create Single Photons for Quantum Communication
Demonstration of room temperature, single photon emission in doped carbon nanotubes opens a new path toward quantum information technologies.
Demonstration of room temperature, single photon emission in doped carbon nanotubes opens a new path toward quantum information technologies.
Scientists synthesize what could be a low-cost, earth-abundant material that splits water to make hydrogen fuel.
Findings could lead to biomimetic coatings for passive radiative cooling technologies for buildings and vehicles.
A novel approach to design and assembly of nanotextured surfaces on photovoltaic devices could improve energy collection.
Boundaries between crystalline grains - usually detrimental - can also boost charge collection in hybrid solar cells.
Researchers use surface-sensitive signals to atomically resolve the structure of a rough surface.
Novel technique accurately distinguishes rare material property linked to improving sensors and computers.
Major milestone in molecular electronics scored by Molecular Foundry and Columbia University team.
Tiny “match-head” wires act as built-in light concentrators, enhancing solar cell efficiency.
For the first time, electron tomography reveals the 3D coordinates of individual atoms and defects in a material.
Researchers have attained superlubricity, the near absence of friction, at a carbon-silica interface using nanodiamonds wrapped in graphene flakes.
A new, dime-sized light source will lead to novel spectrometers for the next generation of scientific discoveries.