![White car (Porsche Taycan) with the hood popped is inside the building with an american flag on the wall.](/sites/default/files/styles/featured_square_large/public/2024-06/2024-P09317.jpg?h=8f9cfe54&itok=m6sQhZRq)
Filter News
Area of Research
News Topics
- (-) Advanced Reactors (2)
- (-) Artificial Intelligence (28)
- (-) Clean Water (5)
- (-) Energy Storage (10)
- (-) Grid (14)
- (-) Isotopes (13)
- (-) Net Zero (6)
- (-) Neutron Science (25)
- (-) Transportation (7)
- 3-D Printing/Advanced Manufacturing (13)
- Big Data (8)
- Bioenergy (15)
- Biology (24)
- Biomedical (6)
- Biotechnology (3)
- Buildings (11)
- Chemical Sciences (13)
- Climate Change (22)
- Composites (4)
- Computer Science (24)
- Coronavirus (1)
- Critical Materials (1)
- Cybersecurity (6)
- Decarbonization (26)
- Education (1)
- Emergency (2)
- Environment (37)
- Exascale Computing (16)
- Fossil Energy (4)
- Frontier (18)
- Fusion (11)
- High-Performance Computing (25)
- Hydropower (2)
- Machine Learning (14)
- Materials (28)
- Materials Science (18)
- Mathematics (3)
- Mercury (1)
- Microelectronics (2)
- Microscopy (6)
- Nanotechnology (5)
- National Security (22)
- Nuclear Energy (18)
- Partnerships (14)
- Physics (14)
- Polymers (3)
- Quantum Computing (14)
- Quantum Science (15)
- Renewable Energy (1)
- Security (2)
- Simulation (27)
- Software (1)
- Space Exploration (7)
- Summit (11)
- Sustainable Energy (18)
Media Contacts
![Artist’s conceptual drawing illustrates the novel energy filtering technique using neutrons that enabled researchers at ORNL to freeze moving germanium telluride atoms in an unblurred image. The images offered key insights into how the material produces its outstanding thermoelectric performance. Credit: Jill Hemman/ORNL, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-03/23-G02345_VariableShutter_0.png?h=68c90eda&itok=LLAHAeOZ)
Scientists have long sought to better understand the “local structure” of materials, meaning the arrangement and activities of the neighboring particles around each atom. In crystals, which are used in electronics and many other applications, most of the atoms form highly ordered lattice patterns that repeat. But not all atoms conform to the pattern.
![From left are UWindsor students Isabelle Dib, Dominik Dziura, Stuart Castillo and Maksymilian Dziura at ORNL’s Neutron Spin Echo spectrometer. Their work advances studies on a natural cancer treatment. Credit: Genevieve Martin/ORNL, U.S. Dept. of Energy](/sites/default/files/styles/list_page_thumbnail/public/2023-03/2022-P14758_0.jpg?h=c6980913&itok=YJLFDsPp)
A scientific instrument at ORNL could help create a noninvasive cancer treatment derived from a common tropical plant.
![ORNL’s award-winning ultraclean condensing high-efficiency natural gas furnace features an affordable add-on technology that can remove more than 99.9% of acidic gases and other emissions. The technology can also be added to other natural gas-driven equipment. Credit: Jill Hemman/ORNL](/sites/default/files/styles/list_page_thumbnail/public/2023-02/furnace_thumb.png?h=4de03b89&itok=reXZ-C6r)
Natural gas furnaces not only heat your home, they also produce a lot of pollution. Even modern high-efficiency condensing furnaces produce significant amounts of corrosive acidic condensation and unhealthy levels of nitrogen oxides
![Pm-147](/sites/default/files/styles/list_page_thumbnail/public/2023-02/2022-P06600_1.jpg?h=99d542f5&itok=X5uWXi2Z)
With larger, purer shipments on a more frequent basis, Oak Ridge National Laboratory is moving closer to routine production of promethium-147. That’s thanks in part to the application of some specific research performed a decade ago for a completely different project.
![Steve Nagler](/sites/default/files/styles/list_page_thumbnail/public/2023-03/2022-P14651_0_0.jpg?h=ae1281eb&itok=gtC0e7y3)
The truth is neutron scattering is not important, according to Steve Nagler. The knowledge gained from using it is what’s important
![ORNL’s Xiahan Sang unambiguously resolved the atomic structure of MXene, a 2D material promising for energy storage, catalysis and electronic conductivity. Image credit: Oak Ridge National Laboratory, U.S. Dept. of Energy; photographer Carlos Jones ORNL’s Xiahan Sang unambiguously resolved the atomic structure of MXene, a 2D material promising for energy storage, catalysis and electronic conductivity. Image credit: Oak Ridge National Laboratory, U.S. Dept. of Energy; photographer Carlos Jones](/sites/default/files/styles/list_page_thumbnail/public/Sang_2016-P07680_0.jpg?itok=w0e5eR_U)
Researchers have long sought electrically conductive materials for economical energy-storage devices. Two-dimensional (2D) ceramics called MXenes are contenders. Unlike most 2D ceramics, MXenes have inherently good conductivity because they are molecular sheets made from the carbides ...