Filter News
Area of Research
- Biology and Environment (8)
- Clean Energy (36)
- Computer Science (3)
- Electricity and Smart Grid (1)
- Functional Materials for Energy (2)
- Fusion and Fission (5)
- Fusion Energy (1)
- Isotopes (7)
- Materials (60)
- Materials for Computing (7)
- National Security (3)
- Neutron Science (15)
- Nuclear Science and Technology (6)
- Quantum information Science (2)
- Supercomputing (21)
News Type
News Topics
- (-) Advanced Reactors (12)
- (-) Energy Storage (44)
- (-) Irradiation (1)
- (-) Isotopes (21)
- (-) Microscopy (18)
- (-) Physics (24)
- (-) Polymers (13)
- (-) Quantum Science (28)
- 3-D Printing/Advanced Manufacturing (50)
- Artificial Intelligence (31)
- Big Data (12)
- Bioenergy (25)
- Biology (23)
- Biomedical (18)
- Biotechnology (7)
- Buildings (16)
- Chemical Sciences (33)
- Clean Water (1)
- Climate Change (25)
- Composites (10)
- Computer Science (62)
- Coronavirus (17)
- Critical Materials (11)
- Cybersecurity (18)
- Decarbonization (23)
- Education (3)
- Element Discovery (1)
- Environment (45)
- Exascale Computing (12)
- Fossil Energy (1)
- Frontier (16)
- Fusion (14)
- Grid (18)
- High-Performance Computing (31)
- ITER (2)
- Machine Learning (14)
- Materials (69)
- Materials Science (54)
- Mercury (2)
- Molten Salt (2)
- Nanotechnology (28)
- National Security (20)
- Net Zero (4)
- Neutron Science (56)
- Nuclear Energy (32)
- Partnerships (28)
- Quantum Computing (10)
- Renewable Energy (1)
- Security (11)
- Simulation (11)
- Software (1)
- Space Exploration (3)
- Statistics (2)
- Summit (21)
- Sustainable Energy (37)
- Transformational Challenge Reactor (4)
- Transportation (32)
Media Contacts
Used lithium-ion batteries from cell phones, laptops and a growing number of electric vehicles are piling up, but options for recycling them remain limited mostly to burning or chemically dissolving shredded batteries.
A team of researchers associated with the Quantum Science Center headquartered at the Department of Energy's Oak Ridge National Laboratory has confirmed the presence of quantum spin liquid behavior in a new material with a triangular lattice, KYbSe2.
Anne Campbell, a researcher at ORNL, recently won the Young Leaders Professional Development Award from the Minerals, Metals & Materials Society, or TMS, and has been chosen as the first recipient of the Young Leaders International Scholar Program award from TMS and the Korean Institute of Metals and Materials, or KIM.
Michael McGuire’s recognition as the Oak Ridge National Laboratory's top scientist headlined the annual awards. ORNL Director Stephen Streiffer also presented Director’s Awards to two teams, for operational performance and continuous improvement, and to the night’s science communicator awardee
As current courses through a battery, its materials erode over time. Mechanical influences such as stress and strain affect this trajectory, although their impacts on battery efficacy and longevity are not fully understood.
ORNL has been selected to lead an Energy Earthshot Research Center, or EERC, focused on developing chemical processes that use sustainable methods instead of burning fossil fuels to radically reduce industrial greenhouse gas emissions to stem climate change and limit the crisis of a rapidly warming planet.
Quantum computers process information using quantum bits, or qubits, based on fragile, short-lived quantum mechanical states. To make qubits robust and tailor them for applications, researchers from the Department of Energy’s Oak Ridge National Laboratory sought to create a new material system.
A new nanoscience study led by a researcher at ORNL takes a big-picture look at how scientists study materials at the smallest scales.
Technologies developed by researchers at ORNL have received six 2023 R&D 100 Awards.
Timothy Gray of ORNL led a study that may have revealed an unexpected change in the shape of an atomic nucleus. The surprise finding could affect our understanding of what holds nuclei together, how protons and neutrons interact and how elements form.