Filter News
Area of Research
- (-) Clean Energy (58)
- Advanced Manufacturing (7)
- Biological Systems (1)
- Biology and Environment (32)
- Computational Biology (1)
- Computational Engineering (2)
- Fusion and Fission (1)
- Fusion Energy (1)
- Isotopes (2)
- Materials (65)
- Materials Characterization (2)
- Materials for Computing (10)
- Materials Under Extremes (1)
- Mathematics (1)
- National Security (4)
- Neutron Science (16)
- Nuclear Science and Technology (4)
- Supercomputing (42)
News Type
News Topics
- (-) Bioenergy (16)
- (-) Clean Water (5)
- (-) Composites (14)
- (-) Exascale Computing (2)
- (-) Materials (29)
- (-) Molten Salt (1)
- (-) Summit (2)
- 3-D Printing/Advanced Manufacturing (51)
- Advanced Reactors (3)
- Artificial Intelligence (5)
- Big Data (2)
- Biology (7)
- Biomedical (4)
- Biotechnology (3)
- Buildings (21)
- Chemical Sciences (11)
- Climate Change (12)
- Computer Science (18)
- Coronavirus (6)
- Critical Materials (8)
- Cybersecurity (3)
- Decarbonization (14)
- Energy Storage (47)
- Environment (28)
- Fossil Energy (1)
- Frontier (1)
- Fusion (1)
- Grid (24)
- High-Performance Computing (3)
- Hydropower (2)
- Isotopes (1)
- Machine Learning (6)
- Materials Science (20)
- Mathematics (1)
- Mercury (2)
- Microscopy (6)
- Nanotechnology (6)
- National Security (4)
- Net Zero (2)
- Neutron Science (7)
- Nuclear Energy (5)
- Partnerships (8)
- Physics (1)
- Polymers (10)
- Quantum Science (1)
- Renewable Energy (1)
- Security (3)
- Simulation (2)
- Space Exploration (2)
- Statistics (1)
- Sustainable Energy (51)
- Transformational Challenge Reactor (3)
- Transportation (43)
Media Contacts
A team including Oak Ridge National Laboratory and University of Tennessee researchers demonstrated a novel 3D printing approach called Z-pinning that can increase the material’s strength and toughness by more than three and a half times compared to conventional additive manufacturing processes.
Electro-Active Technologies, Inc., of Knoxville, Tenn., has exclusively licensed two biorefinery technologies invented and patented by the startup’s co-founders while working at the Department of Energy’s Oak Ridge National Laboratory. The technologies work as a system that converts organic waste into renewable hydrogen gas for use as a biofuel.
A new method developed at Oak Ridge National Laboratory improves the energy efficiency of a desalination process known as solar-thermal evaporation.
A team of scientists led by Oak Ridge National Laboratory have discovered the specific gene that controls an important symbiotic relationship between plants and soil fungi, and successfully facilitated the symbiosis in a plant that
A team of scientists led by Oak Ridge National Laboratory used carbon nanotubes to improve a desalination process that attracts and removes ionic compounds such as salt from water using charged electrodes.
Scientists studying a valuable, but vulnerable, species of poplar have identified the genetic mechanism responsible for the species’ inability to resist a pervasive and deadly disease. Their finding, published in the Proceedings of the National Academy of Sciences, could lead to more successful hybrid poplar varieties for increased biofuels and forestry production and protect native trees against infection.
The U.S. Department of Energy’s Oak Ridge National Laboratory today unveiled Summit as the world’s most powerful and smartest scientific supercomputer.
A new manufacturing method created by Oak Ridge National Laboratory and Rice University combines 3D printing with traditional casting to produce damage-tolerant components composed of multiple materials. Composite components made by pouring an aluminum alloy over a printed steel lattice showed an order of magnitude greater damage tolerance than aluminum alone.