Filter News
Area of Research
News Topics
- (-) Materials Science (26)
- (-) Physics (9)
- 3-D Printing/Advanced Manufacturing (30)
- Advanced Reactors (5)
- Artificial Intelligence (45)
- Big Data (28)
- Bioenergy (16)
- Biology (22)
- Biomedical (13)
- Biotechnology (10)
- Buildings (29)
- Chemical Sciences (30)
- Clean Water (6)
- Composites (11)
- Computer Science (46)
- Critical Materials (7)
- Education (2)
- Emergency (3)
- Energy Storage (15)
- Environment (38)
- Exascale Computing (25)
- Fossil Energy (4)
- Frontier (21)
- Fusion (12)
- Grid (16)
- High-Performance Computing (45)
- Hydropower (1)
- Isotopes (17)
- ITER (2)
- Machine Learning (23)
- Materials (24)
- Mathematics (7)
- Microelectronics (2)
- Microscopy (4)
- Molten Salt (1)
- Nanotechnology (2)
- National Security (34)
- Neutron Science (23)
- Nuclear Energy (15)
- Partnerships (29)
- Polymers (5)
- Quantum Computing (20)
- Quantum Science (22)
- Security (8)
- Simulation (24)
- Space Exploration (3)
- Statistics (3)
- Summit (14)
- Transportation (15)
ORNL's Communications team works with news media seeking information about the laboratory. Media may use the resources listed below or send questions to news@ornl.gov.
1 - 10 of 34 Results

ORNL researchers created and tested two methods for transforming coal into the scarce mineral graphite, which is used in batteries for electric vehicles.

The Proton Power Upgrade project at ORNL's Spallation Neutron Source has achieved its final key performance parameter of 1,250 hours of neutron production at 1.7 megawatts of proton beam power on a newly developed target.

Researchers used the Summit supercomputer at ORNL to answer one of fission’s big questions: What exactly happens during the nucleus’s “neck rupture” as it splits in two? Scission neutrons have been theorized to be among those particles emitted during neck rupture, although their exact characteristics have been debated due to a lack of conclusive experimental evidence of their existence.

Researchers led by the University of Melbourne, Australia, have been nominated for the Association for Computing Machinery’s 2024 Gordon Bell Prize in supercomputing for conducting a quantum molecular dynamics simulation 1,000 times greater in size and speed than any previous simulation of its kind.

Biochemist David Baker — just announced as a recipient of the Nobel Prize for Chemistry — turned to the High Flux Isotope Reactor (HFIR) at Oak Ridge National Laboratory for information he couldn’t get anywhere else. HFIR is the strongest reactor-based neutron source in the United States.

A study led by the Department of Energy’s Oak Ridge National Laboratory details how artificial intelligence researchers created an AI model to help identify new alloys used as shielding for housing fusion applications components in a nuclear reactor. The findings mark a major step towards improving nuclear fusion facilities.

ORNL's Spallation Neutron Source, the nation’s leading source of pulsed neutron beams for research, was recently restarted after nine months of upgrade work.

Distinguished materials scientist Takeshi Egami has spent his career revealing the complex atomic structure of metallic glass and other liquids — sometimes sharing theories with initially resistant minds in the scientific community.

A team led by scientists at ORNL identified and demonstrated a method to process a plant-based material called nanocellulose that reduced energy needs by a whopping 21%, using simulations on the lab’s supercomputers and follow-on analysis.

Nuclear physicists at the Department of Energy’s Oak Ridge National Laboratory recently used Frontier, the world’s most powerful supercomputer, to calculate the magnetic properties of calcium-48’s atomic nucleus.