Wrinkled surfaces could have widespread applications
MIT team discovers way of making perfectly ordered and repeatable surfaces with patterns of microscale wrinkles.
MIT team discovers way of making perfectly ordered and repeatable surfaces with patterns of microscale wrinkles.
Leaders from academia and the technology industry will work together to share ideas and plan ways to help transform U.S. manufacturing.
Long-sought goal for quantum devices — the ability to transmit single photons while blocking multiple photons — is finally achieved.
New technique allows production of complex microchip structures in one self-assembling step.
Researchers find new method for making spherical particles, from nanoscale to pinhead-sized — including complex beach-ball-like shapes.
System developed at MIT could combine power harvested from light, heat and vibrations to run monitoring systems.
Newly minted MIT PhD selected for two-year social entrepreneurship fellowship.
New system developed at MIT allows precise measurements and tracking of disease progression.
MIT IDEAS Global Challenge team wins $50,000 in international competition.
MIT researchers produce 3-D configurations that could lead to new microchips and other devices.
Interdisciplinary dialogue among global leaders focuses on developing strong biomedical innovation ecosystems.
Recognized for biomedical discoveries and commercialization of inventions revolutionizing human health