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Researcher
- Gabriel Veith
- Guang Yang
- Michelle Lehmann
- Beth L Armstrong
- Lawrence {Larry} M Anovitz
- Robert Sacci
- Tomonori Saito
- Venkatakrishnan Singanallur Vaidyanathan
- Amir K Ziabari
- Ethan Self
- Jaswinder Sharma
- Philip Bingham
- Ryan Dehoff
- Sergiy Kalnaus
- Vincent Paquit
- Alexandra Moy
- Alexey Serov
- Amanda Musgrove
- Amit K Naskar
- Andrew G Stack
- Anisur Rahman
- Anna M Mills
- Annetta Burger
- Benjamin L Doughty
- Carter Christopher
- Chance C Brown
- Chanho Kim
- Debraj De
- Diana E Hun
- Felipe Polo Garzon
- Gautam Malviya Thakur
- Georgios Polyzos
- Gina Accawi
- Gurneesh Jatana
- Ilias Belharouak
- James Gaboardi
- Jason Jarnagin
- Jesse McGaha
- Juliane Weber
- Jun Yang
- Junyan Zhang
- Kevin Spakes
- Kevin Sparks
- Khryslyn G Araño
- Lilian V Swann
- Liz McBride
- Logan Kearney
- Mark M Root
- Mark Provo II
- Matthew S Chambers
- Michael Kirka
- Michael Toomey
- Nancy Dudney
- Nihal Kanbargi
- Obaid Rahman
- Peng Yang
- Philip Boudreaux
- Rob Root
- Sai Krishna Reddy Adapa
- Sam Hollifield
- Todd Thomas
- Vera Bocharova
- Xiang Lyu
- Xiuling Nie

ORNL researchers have developed a deep learning-based approach to rapidly perform high-quality reconstructions from sparse X-ray computed tomography measurements.

The present invention is a carbon nanofiber composite for use as the cathode matrix in an alkali-metal polysulfide flow battery. The CNF composite demonstrates an improvement in sulfur utilization compared to carbon paper alone.

Often there are major challenges in developing diverse and complex human mobility metrics systematically and quickly.

Process to coat air and or moisture sensitive solid electrolytes for all solid state batteries.
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

This invention utilizes a custom-synthesized vinyl trifluoromethanesulfonimide (VTFSI) salt and an alcohol containing small molecule or polymer for the synthesis of novel single-ion conducting polymer electrolytes for the use in Li-ion and beyond Li-ion batteries, fuel cells,

CO2 capture by mineral looping, either using calcium or magnesium precursors requires that the materials be calcined after CO2 is captured from the atmosphere. This separates the CO2 for later sequestration and returned the starting material to its original state.

The ever-changing cellular communication landscape makes it difficult to identify, map, and localize commercial and private cellular base stations (PCBS).

We have been working to adapt background oriented schlieren (BOS) imaging to directly visualize building leakage, which is fast and easy.

This is a novel approach to enhance the performance and durability of all-solid-state batteries (ASSBs) by focusing on two primary components: the Si anode and the thin electrolyte integration.