Three ORNL intellectual property projects with industry partners have advanced in DOE's Office of Technology Transitions Making Advanced Technology Commercialization Harmonized, or Lab MATCH, prize, which encourages entrepreneurs to find actionable path
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The Department of Energy’s Oak Ridge National Laboratory is providing national leadership in a new collaboration among five national laboratories to accelerate U.S. production of clean hydrogen fuel cells and electrolyzers.
SkyNano, an Innovation Crossroads alumnus, held a ribbon-cutting for their new facility. SkyNano exemplifies using DOE resources to build a successful clean energy company, making valuable carbon nanotubes from waste CO2.
Hu Miao, a researcher at ORNL, has been selected as an Outstanding Referee by the American Physical Society in recognition of his exceptional service in assessing manuscripts for publication in the society’s journals.
Collaborative research that combined experiments at Yale University and molecular dynamics simulations at the Department of Energy’s Oak Ridge National Laboratory provides new insights into solving a major technical obstacle to efficient and sustainable
To capitalize on AI and researcher strengths, scientists developed a human-AI collaboration recommender system for improved experimentation performance.
Chelsea Chen, a polymer physicist at ORNL, is studying ion transport in solid electrolytes that could help electric vehicle battery charges last longer.
The University of Tennessee-Oak Ridge Innovation Institute has selected circular bioeconomy systems and radiopharmaceutical therapies as its two newest Convergent Research Initiatives, areas of joint research for UT and ORNL.
In a win for chemistry, inventors at ORNL have designed a closed-loop path for synthesizing an exceptionally tough carbon-fiber-reinforced polymer, or CFRP, and later recovering all of its starting materials.
Research led by ORNL’s Marti Checa and Liam Collins has pioneered a groundbreaking approach described in the journal Nature Communications that enables visualizing charge motion at the nanometer level, or one billionth of a meter, but at speeds thousand