Explore recent research from the ÌìÃÀÓ°Ôº: a new AI framework for developing advanced materials, a test of climate models’ ability to predict temperature trends, and the role of paternal body odor in brain-to-brain synchrony with infants.


Explore recent research from the ÌìÃÀÓ°Ôº: a new AI framework for developing advanced materials, a test of climate models’ ability to predict temperature trends, and the role of paternal body odor in brain-to-brain synchrony with infants.

Researchers at the ÌìÃÀÓ°Ôºhave created a recyclable, flexible and self-healing composite material that could replace traditional circuit boards in future generations of wearable electronics.

ÌìÃÀÓ°Ôºresearchers have developed a flexible, durable electronic prototype that can harvest energy from body heat and turn it into electricity that can be used to power small electronics, such as batteries, sensors or LEDs. This device is also resilient — it still functions even after being pierced several times and then stretched 2,000 times.