Filter News
Area of Research
- (-) Advanced Manufacturing (2)
- (-) Materials for Computing (4)
- (-) Transportation Systems (2)
- Biology and Environment (11)
- Clean Energy (54)
- Computational Biology (1)
- Computational Engineering (2)
- Fuel Cycle Science and Technology (1)
- Fusion and Fission (9)
- Fusion Energy (7)
- Isotope Development and Production (1)
- Isotopes (9)
- Materials (23)
- Mathematics (1)
- National Security (5)
- Neutron Science (8)
- Nuclear Science and Technology (19)
- Nuclear Systems Modeling, Simulation and Validation (1)
- Supercomputing (23)
News Topics
- (-) Isotopes (1)
- (-) Nuclear Energy (2)
- (-) Summit (1)
- (-) Transportation (5)
- 3-D Printing/Advanced Manufacturing (22)
- Advanced Reactors (1)
- Artificial Intelligence (1)
- Bioenergy (1)
- Biomedical (2)
- Chemical Sciences (3)
- Composites (4)
- Computer Science (4)
- Coronavirus (2)
- Cybersecurity (1)
- Decarbonization (1)
- Energy Storage (2)
- Environment (1)
- Fusion (1)
- Machine Learning (1)
- Materials (12)
- Materials Science (16)
- Microscopy (3)
- Nanotechnology (4)
- National Security (1)
- Neutron Science (3)
- Polymers (5)
- Quantum Science (2)
- Security (1)
- Space Exploration (2)
- Sustainable Energy (9)
- Transformational Challenge Reactor (1)
Media Contacts
In experiment after experiment, the synthetic radioisotope actinium-225 has shown promise for targeting and attacking certain types of cancer cells.
Oak Ridge National Laboratory researchers developed and demonstrated algorithm-based controls for a hybrid electric bus that yielded up to 30% energy savings compared with existing controls.
Oak Ridge National Laboratory researchers have developed a new catalyst for converting ethanol into C3+ olefins – the chemical
In the quest for advanced vehicles with higher energy efficiency and ultra-low emissions, ORNL researchers are accelerating a research engine that gives scientists and engineers an unprecedented view inside the atomic-level workings of combustion engines in real time.
Oak Ridge National Laboratory researchers have developed a new family of cathodes with the potential to replace the costly cobalt-based cathodes typically found in today’s lithium-ion batteries that power electric vehicles and consumer electronics.
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.
Researchers at Oak Ridge National Laboratory proved that a certain class of ionic liquids, when mixed with commercially available oils, can make gears run more efficiently with less noise and better durability.
Using additive manufacturing, scientists experimenting with tungsten at Oak Ridge National Laboratory hope to unlock new potential of the high-performance heat-transferring material used to protect components from the plasma inside a fusion reactor. Fusion requires hydrogen isotopes to reach millions of degrees.