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![Tennessine thumbnail Tennessine thumbnail](/sites/default/files/styles/list_page_thumbnail/public/Tennessine-thumb%5B2%5D.jpg?itok=PEPnpv14)
![Shull and Wollan Shull and Wollan](/sites/default/files/styles/list_page_thumbnail/public/Shull_Wollan_history.jpeg?itok=zutU7aC-)
![ORNL Image](/sites/default/files/styles/list_page_thumbnail/public/ORNL-Boeing%20trim%20tool_1.jpg?itok=X-2yZ3hz)
A 3D printed trim-and-drill tool, developed by researchers at the Department of Energy’s Oak Ridge National Laboratory to be evaluated at The Boeing Company, has received the title of largest solid 3D printed item by Guinness World Records. ORNL printed the...
![Theoretical condensed matter physicist Cristian Batista brings advanced knowledge of theory to expand upon the experimental physics research conducted at ORNL. (Image credit: Genevieve Martin) Theoretical condensed matter physicist Cristian Batista brings advanced knowledge of theory to expand upon the experimental physics research conducted at ORNL. (Image credit: Genevieve Martin)](/sites/default/files/styles/list_page_thumbnail/public/news/images/Cristian%20Batista-7875_sm.jpg?itok=hnEVmS3b)
![Berkelium-249, contained in the greenish fluid in the tip of the vial, was crucial to the experiment that discovered element 117. It was made in the research reactor at DOE's Oak Ridge National Laboratory. Berkelium-249, contained in the greenish fluid in the tip of the vial, was crucial to the experiment that discovered element 117. It was made in the research reactor at DOE's Oak Ridge National Laboratory.](/sites/default/files/styles/list_page_thumbnail/public/berkelium-249.png?itok=U3_sHwYQ)
The International Union of Pure and Applied Chemistry (IUPAC) Inorganic Chemistry Division has published a Provisional Recommendation for the names and symbols of the recently discovered superheavy elements 113, 115, 117, and 118.
![Illustration showing structure of Bi2Se3-EuS bilayer film. (Image credit: ORNL/Jill Hemman) Illustration showing structure of Bi2Se3-EuS bilayer film. (Image credit: ORNL/Jill Hemman)](/sites/default/files/styles/list_page_thumbnail/public/news/images/16-G00316_Lauter_ornlStory2.png?itok=w3Ag9nk7)
![This rendering illustrates the excitation of a spin liquid on a honeycomb lattice using neutrons. This rendering illustrates the excitation of a spin liquid on a honeycomb lattice using neutrons.](/sites/default/files/styles/list_page_thumbnail/public/news/images/quantumspin_750x500.jpg?itok=thIJhAFF)
Researchers at the Department of Energy’s Oak Ridge National Laboratory used neutrons to uncover novel behavior in materials that holds promise for quantum computing. The findings, published in Nature Materials, provide evidence for long-sought phenomena in a two-dim...