Arrays of quantum rods could enhance TVs or virtual reality devices
MIT engineers developed a new way to create these arrays, by scaffolding quantum rods onto patterned DNA.
MIT engineers developed a new way to create these arrays, by scaffolding quantum rods onto patterned DNA.
The disorganized arrangement of the proteins in light-harvesting complexes is the key to their extreme efficiency.
The results could help turn up unconventional superconducting materials.
A new way of machining microscale rotors from diamond crystal can enable ultrasensitive NMR devices for probing proteins and other materials.
MIT’s Science Policy Initiative sends students and postdocs to Capitol Hill to advocate for continued and increased federal support for scientific research.
PhD student Rishabh Datta seeks further understanding of astrophysical phenomena.
These tunable proteins could be used to create new materials with specific mechanical properties, like toughness or flexibility.
U.S. Department of Energy selects MIT to establish collaborative research center for optimizing the development of tandem solar modules.
MIT engineers identified an unusually absorbent material that could be used for passive cooling or water harvesting in warm climates.
These highly stable metal-organic frameworks could be useful for applications such as capturing greenhouse gases.
Stacking light-emitting diodes instead of placing them side by side could enable fully immersive virtual reality displays and higher-resolution digital screens.
Prochlorococcus, the world’s most abundant photosynthetic organism, reveals a gene-transfer mechanism that may be key to its abundance and diversity.
Researchers have demonstrated directional photon emission, the first step toward extensible quantum interconnects.
The head of MIT’s Department of Mechanical Engineering was nominated by President Biden to lead ARPA-E’s mission to support critical energy research.
Unique PSFC-designed spectrometer provides crucial data about the implosion that yielded an historic fusion energy gain.