Filter News
Area of Research
- (-) Clean Energy (9)
- Advanced Manufacturing (3)
- Biology and Environment (2)
- Climate and Environmental Systems (1)
- Fusion Energy (3)
- Materials (14)
- Materials for Computing (1)
- National Security (1)
- Neutron Science (3)
- Nuclear Science and Technology (2)
- Quantum information Science (2)
- Supercomputing (7)
- Transportation Systems (1)
News Topics
- (-) Climate Change (3)
- (-) Materials Science (5)
- (-) Space Exploration (1)
- 3-D Printing/Advanced Manufacturing (4)
- Clean Water (2)
- Composites (1)
- Computer Science (5)
- Coronavirus (1)
- Energy Storage (8)
- Environment (8)
- Grid (4)
- Machine Learning (2)
- Microscopy (2)
- Nanotechnology (1)
- Nuclear Energy (1)
- Polymers (2)
- Sustainable Energy (9)
- Transportation (9)
Media Contacts
Oak Ridge National Laboratory scientists evaluating northern peatland responses to environmental change recorded extraordinary fine-root growth with increasing temperatures, indicating that this previously hidden belowground mechanism may play an important role in how carbon-rich peatlands respond to warming.
Researchers at Oak Ridge National Laboratory developed a method that uses machine learning to predict seasonal fire risk in Africa, where half of the world’s wildfire-related carbon emissions originate.
Oak Ridge National Laboratory scientists seeking the source of charge loss in lithium-ion batteries demonstrated that coupling a thin-film cathode with a solid electrolyte is a rapid way to determine the root cause.
An international team of scientists found that rules governing plant growth hold true even at the edges of the world in the Arctic tundra.
Oak Ridge National Laboratory researchers have developed a thin film, highly conductive solid-state electrolyte made of a polymer and ceramic-based composite for lithium metal batteries.
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.
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 researchers at Oak Ridge National Laboratory have demonstrated that designed synthetic polymers can serve as a high-performance binding material for next-generation lithium-ion batteries.
By automating the production of neptunium oxide-aluminum pellets, Oak Ridge National Laboratory scientists have eliminated a key bottleneck when producing plutonium-238 used by NASA to fuel deep space exploration.