Filter News
Area of Research
- (-) Materials (16)
- (-) Neutron Science (10)
- (-) Nuclear Science and Technology (17)
- Biological Systems (1)
- Biology and Environment (40)
- Clean Energy (38)
- Computational Biology (1)
- Computer Science (1)
- Electricity and Smart Grid (1)
- Fusion and Fission (20)
- Fusion Energy (4)
- Isotopes (5)
- Materials for Computing (3)
- National Security (17)
- Quantum information Science (4)
- Supercomputing (37)
News Topics
- (-) Big Data (2)
- (-) Biomedical (6)
- (-) Clean Water (3)
- (-) Coronavirus (4)
- (-) Grid (2)
- (-) Machine Learning (4)
- (-) Nuclear Energy (22)
- (-) Quantum Science (1)
- (-) Sustainable Energy (2)
- 3-D Printing/Advanced Manufacturing (7)
- Advanced Reactors (4)
- Artificial Intelligence (6)
- Bioenergy (4)
- Biology (1)
- Buildings (1)
- Chemical Sciences (7)
- Composites (2)
- Computer Science (13)
- Cybersecurity (1)
- Decarbonization (2)
- Energy Storage (7)
- Environment (8)
- Exascale Computing (1)
- Fossil Energy (1)
- Fusion (8)
- High-Performance Computing (2)
- Isotopes (7)
- Materials (22)
- Materials Science (21)
- Mathematics (1)
- Microscopy (6)
- Molten Salt (1)
- Nanotechnology (9)
- National Security (1)
- Neutron Science (37)
- Partnerships (3)
- Physics (12)
- Polymers (5)
- Quantum Computing (2)
- Security (1)
- Space Exploration (3)
- Summit (2)
- Transformational Challenge Reactor (3)
- Transportation (5)
Media Contacts
Ask Tyler Gerczak to find a negative in working at the Department of Energy’s Oak Ridge National Laboratory, and his only complaint is the summer weather. It is not as forgiving as the summers in Pulaski, Wisconsin, his hometown.
Six new nuclear reactor technologies are set to deploy for commercial use between 2030 and 2040. Called Generation IV nuclear reactors, they will operate with improved performance at dramatically higher temperatures than today’s reactors.
Scientists have demonstrated a new bio-inspired material for an eco-friendly and cost-effective approach to recovering uranium from seawater.
Researchers at the Department of Energy’s Oak Ridge National Laboratory, Pacific Northwest National Laboratory and Washington State University teamed up to investigate the complex dynamics of low-water liquids that challenge nuclear waste processing at federal cleanup sites.
Oak Ridge National Laboratory scientists have developed a crucial component for a new kind of low-cost stationary battery system utilizing common materials and designed for grid-scale electricity storage. Large, economical electricity storage systems can benefit the nation’s grid ...
A tiny vial of gray powder produced at the Department of Energy’s Oak Ridge National Laboratory is the backbone of a new experiment to study the intense magnetic fields created in nuclear collisions.
“Made in the USA.” That can now be said of the radioactive isotope molybdenum-99 (Mo-99), last made in the United States in the late 1980s. Its short-lived decay product, technetium-99m (Tc-99m), is the most widely used radioisotope in medical diagnostic imaging. Tc-99m is best known ...
When it’s up and running, the ITER fusion reactor will be very big and very hot, with more than 800 cubic meters of hydrogen plasma reaching 170 million degrees centigrade. The systems that fuel and control it, on the other hand, will be small and very cold. Pellets of frozen gas will be shot int...