Filter News
Area of Research
- Advanced Manufacturing (3)
- Biology and Environment (18)
- Clean Energy (34)
- Computational Engineering (1)
- Computer Science (2)
- Energy Frontier Research Centers (1)
- Fuel Cycle Science and Technology (1)
- Fusion and Fission (14)
- Fusion Energy (1)
- Isotope Development and Production (1)
- Isotopes (2)
- Materials (66)
- Materials Characterization (1)
- Materials for Computing (6)
- Materials Under Extremes (1)
- National Security (13)
- Neutron Science (27)
- Nuclear Science and Technology (9)
- Sensors and Controls (1)
- Supercomputing (46)
News Type
News Topics
- (-) Advanced Reactors (10)
- (-) Artificial Intelligence (29)
- (-) Bioenergy (23)
- (-) Frontier (14)
- (-) Materials Science (49)
- (-) Molten Salt (2)
- (-) Nanotechnology (26)
- (-) Nuclear Energy (26)
- (-) Physics (24)
- (-) Security (11)
- (-) Summit (20)
- (-) Transformational Challenge Reactor (4)
- 3-D Printing/Advanced Manufacturing (43)
- Big Data (7)
- Biology (21)
- Biomedical (17)
- Biotechnology (7)
- Buildings (12)
- Chemical Sciences (28)
- Clean Water (1)
- Climate Change (21)
- Composites (9)
- Computer Science (57)
- Coronavirus (17)
- Critical Materials (11)
- Cybersecurity (17)
- Decarbonization (18)
- Education (3)
- Element Discovery (1)
- Energy Storage (41)
- Environment (34)
- Exascale Computing (9)
- Fossil Energy (1)
- Fusion (14)
- Grid (15)
- High-Performance Computing (26)
- Isotopes (18)
- ITER (2)
- Machine Learning (13)
- Materials (57)
- Mercury (2)
- Microelectronics (1)
- Microscopy (16)
- National Security (18)
- Net Zero (3)
- Neutron Science (49)
- Partnerships (27)
- Polymers (12)
- Quantum Computing (9)
- Quantum Science (26)
- Renewable Energy (1)
- Simulation (8)
- Space Exploration (3)
- Statistics (1)
- Sustainable Energy (30)
- Transportation (25)
Media Contacts
OAK RIDGE, Tenn., Feb. 27, 2020 — Researchers at Oak Ridge National Laboratory and the University of Tennessee achieved a rare look at the inner workings of polymer self-assembly at an oil-water interface to advance materials for neuromorphic computing and bio-inspired technologies.
OAK RIDGE, Tenn., Feb. 19, 2020 — The U.S. Department of Energy’s Oak Ridge National Laboratory and the Tennessee Valley Authority have signed a memorandum of understanding to evaluate a new generation of flexible, cost-effective advanced nuclear reactors.
An international team of researchers has discovered the hydrogen atoms in a metal hydride material are much more tightly spaced than had been predicted for decades — a feature that could possibly facilitate superconductivity at or near room temperature and pressure.
Rigoberto “Gobet” Advincula has been named Governor’s Chair of Advanced and Nanostructured Materials at Oak Ridge National Laboratory and the University of Tennessee.
Gina Tourassi has been appointed as director of the National Center for Computational Sciences, a division of the Computing and Computational Sciences Directorate at Oak Ridge National Laboratory.
A technology developed at the ORNL and scaled up by Vertimass LLC to convert ethanol into fuels suitable for aviation, shipping and other heavy-duty applications can be price-competitive with conventional fuels
The U.S. Department of Energy’s Office of Science announced allocations of supercomputer access to 47 science projects for 2020.
Researchers at the Department of Energy’s Oak Ridge National Laboratory have received five 2019 R&D 100 Awards, increasing the lab’s total to 221 since the award’s inception in 1963.
The U.S. Department of Energy announced funding for 12 projects with private industry to enable collaboration with DOE national laboratories on overcoming challenges in fusion energy development.
ORNL and The University of Toledo have entered into a memorandum of understanding for collaborative research.