
Filter News
Area of Research
- Advanced Manufacturing (9)
- Biology and Environment (26)
- Computational Biology (1)
- Computational Engineering (1)
- Computer Science (7)
- Electricity and Smart Grid (2)
- Energy Science (75)
- Functional Materials for Energy (2)
- Fusion and Fission (11)
- Fusion Energy (8)
- Isotope Development and Production (1)
- Isotopes (27)
- Materials (137)
- Materials Characterization (2)
- Materials for Computing (20)
- Materials Under Extremes (1)
- National Security (33)
- Neutron Science (125)
- Nuclear Science and Technology (24)
- Nuclear Systems Modeling, Simulation and Validation (1)
- Quantum information Science (4)
- Supercomputing (74)
News Topics
- (-) Advanced Reactors (40)
- (-) Artificial Intelligence (131)
- (-) Cybersecurity (35)
- (-) Isotopes (62)
- (-) Materials (157)
- (-) Microelectronics (4)
- (-) Microscopy (56)
- (-) Neutron Science (171)
- (-) Polymers (35)
- (-) Space Exploration (26)
- 3-D Printing/Advanced Manufacturing (146)
- Big Data (79)
- Bioenergy (112)
- Biology (128)
- Biomedical (73)
- Biotechnology (39)
- Buildings (74)
- Chemical Sciences (86)
- Clean Water (33)
- Composites (35)
- Computer Science (226)
- Coronavirus (48)
- Critical Materials (29)
- Education (5)
- Element Discovery (1)
- Emergency (4)
- Energy Storage (114)
- Environment (218)
- Exascale Computing (67)
- Fossil Energy (8)
- Frontier (64)
- Fusion (66)
- Grid (74)
- High-Performance Computing (130)
- Hydropower (12)
- Irradiation (3)
- ITER (9)
- Machine Learning (68)
- Materials Science (158)
- Mathematics (12)
- Mercury (12)
- Molten Salt (10)
- Nanotechnology (64)
- National Security (86)
- Nuclear Energy (122)
- Partnerships (68)
- Physics (69)
- Quantum Computing (53)
- Quantum Science (93)
- Security (31)
- Simulation (65)
- Software (1)
- Statistics (4)
- Summit (71)
- Transportation (103)
Media Contacts

With Tennessee schools online for the rest of the school year, researchers at ORNL are making remote learning more engaging by “Zooming” into virtual classrooms to tell students about their science and their work at a national laboratory.

In the 1960s, Oak Ridge National Laboratory's four-year Molten Salt Reactor Experiment tested the viability of liquid fuel reactors for commercial power generation. Results from that historic experiment recently became the basis for the first-ever molten salt reactor benchmark.

In the race to identify solutions to the COVID-19 pandemic, researchers at the Department of Energy’s Oak Ridge National Laboratory are joining the fight by applying expertise in computational science, advanced manufacturing, data science and neutron science.

Scientists at Oak Ridge National Laboratory used a focused beam of electrons to stitch platinum-silicon molecules into graphene, marking the first deliberate insertion of artificial molecules into a graphene host matrix.

Oak Ridge National Laboratory researchers working on neutron imaging capabilities for nuclear materials have developed a process for seeing the inside of uranium particles – without cutting them open.

A software package, 10 years in the making, that can predict the behavior of nuclear reactors’ cores with stunning accuracy has been licensed commercially for the first time.

A versatile class of flexible, protein-like polymers could significantly advance future drug delivery methods. But first, scientists have to develop a reliable process for tailoring these polymers into shapes that can effectively transport medicines throughout the human body.

Biological membranes, such as the “walls” of most types of living cells, primarily consist of a double layer of lipids, or “lipid bilayer,” that forms the structure, and a variety of embedded and attached proteins with highly specialized functions, including proteins that rapidly and selectively transport ions and molecules in and out of the cell.

OAK RIDGE, Tenn., Feb. 27, 2020 — Researchers at Oak Ridge National Laboratory and the University of Tennessee achieved a rare look at the inner workings of polymer self-assembly at an oil-water interface to advance materials for neuromorphic computing and bio-inspired technologies.