Researchers harness 2D magnetic materials for energy-efficient computing
An MIT team precisely controlled an ultrathin magnet at room temperature, which could enable faster, more efficient processors and computer memories.
An MIT team precisely controlled an ultrathin magnet at room temperature, which could enable faster, more efficient processors and computer memories.
MIT spinout Elicio developed a vaccine based on a lymph node-targeting approach first developed at the Koch Institute. Phase 1 solid tumor clinical trial results are promising so far.
At the ASM Materials Education Foundation’s 2023 Undergraduate Design Competition, seniors Louise Anderfaas and Darsh Grewal design a super-strong aluminum plate for applications such as planes and cars.
Me-Shirts, winner of the annual MIT materials science competition, has developed a biodegradable material than can be easily added and removed from shirts.
The MIT professor emerita and pioneering molecular biologist is being honored for her advocacy for women in science.
EMERGE program ignites interest in science through hands-on electron microscopy.
Faculty and researchers across MIT’s School of Engineering receive many awards in recognition of their scholarship, service, and overall excellence.
MIT Koch Institute researchers Daniel Anderson and Ana Jaklenec, plus 11 MIT alumni, are honored for inventions that have made a tangible impact on society.
MIT professor combines nanoscience and viruses to develop solutions in energy, environment, and medicine.
During the last week of November, MIT hosted symposia and events aimed at examining the implications and possibilities of generative AI.
DMSE’s new multipurpose hub invites undergraduates to explore materials, blending science, technology, and hands-on discovery.
Using machine learning, the computational method can provide details of how materials work as catalysts, semiconductors, or battery components.
MIT Digital Learning Lab and Empowr pilot a new internship program.
The Nano Summit highlights nanoscale research across multiple disciplines at MIT.
The work demonstrates control over key properties leading to better performance.