Using excess heat to improve electrolyzers and fuel cells
New technology could help generate hydrogen and chemical industry ingredients.
New technology could help generate hydrogen and chemical industry ingredients.
An art-science collaboration tests the limits of visual technologies.
The design could someday enable a fully decarbonized power grid, researchers say.
A new membrane material could make purification of gases significantly more efficient, potentially helping to reduce carbon emissions.
An MIT team incorporates AI to facilitate the detection of an intriguing materials phenomenon that can lead to electronics without energy dissipation.
Researchers have developed a technique for making quantum computing more resilient to noise, which boosts performance.
A new way to make carbon fiber could turn refinery byproducts into high-value, ultralight structural materials for cars, aircraft, and spacecraft.
Chemical engineers use neural networks to discover the properties of metal-organic frameworks, for catalysis and other applications.
A new machine-learning technique could pinpoint potential power grid failures or cascading traffic bottlenecks in real time.
Discovery shows for the first time that multiferroic properties can exist in a two-dimensional material; could lead to more efficient magnetic memory devices.
Thermal span in a layered compound promises applications in next-generation electrical switches and nonvolatile memory.
The new substance is the result of a feat thought to be impossible: polymerizing a material in two dimensions.
The findings could redefine the kinds of particles that were abundant in the early universe.
The discovery could offer a route to smaller, faster electronic devices.
Tenth annual US C3E Women in Clean Energy Symposium focuses on equity and justice in the clean-energy transition.