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Researcher
- Adam M Guss
- Beth L Armstrong
- Gabriel Veith
- Guang Yang
- Josh Michener
- Michelle Lehmann
- Edgar Lara-Curzio
- Liangyu Qian
- Robert Sacci
- Tomonori Saito
- Ying Yang
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- Andrzej Nycz
- Austin L Carroll
- Biruk A Feyissa
- Bruce A Pint
- Carrie Eckert
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- Eric Wolfe
- Ethan Self
- Isaiah Dishner
- Jaswinder Sharma
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- Kuntal De
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- Serena Chen
- Sergiy Kalnaus
- Steven J Zinkle
- Udaya C Kalluri
- Vilmos Kertesz
- Xiaohan Yang
- Yanli Wang
- Yutai Kato
- Alexandra Moy
- Alexey Serov
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- Alice Perrin
- Amanda Musgrove
- Amit K Naskar
- Anisur Rahman
- Anna M Mills
- Benjamin L Doughty
- Ben Lamm
- Bishnu Prasad Thapaliya
- Brandon Johnston
- Brian Sanders
- Chanho Kim
- Charles Hawkins
- Chris Masuo
- Christopher Ledford
- Clay Leach
- Debjani Pal
- Frederic Vautard
- Georgios Polyzos
- Gerald Tuskan
- Ilenne Del Valle Kessra
- Ilias Belharouak
- Jay D Huenemann
- Jerry Parks
- Jiheon Jun
- Joanna Tannous
- Jun Yang
- Khryslyn G Araño
- Kyle Davis
- Logan Kearney
- Marie Romedenne
- Matthew S Chambers
- Meghan Lamm
- Michael Kirka
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- Nancy Dudney
- Nandhini Ashok
- Nidia Gallego
- Nihal Kanbargi
- Patxi Fernandez-Zelaia
- Paul Abraham
- Priyanshi Agrawal
- Ryan Dehoff
- Shajjad Chowdhury
- Tim Graening Seibert
- Tolga Aytug
- Vera Bocharova
- Vincent Paquit
- Weicheng Zhong
- Wei Tang
- William Alexander
- Xiang Chen
- Xiang Lyu
- Yan-Ru Lin
- Yang Liu
- Yasemin Kaygusuz
- Yong Chae Lim
- Zhili Feng

Mechanism-Based Trait Inference in Plants Using Multiplex Networks, AI Agents, and Translation Tools
This system enables the modular design and optimization of complex plant traits by organizing genes and regulatory mechanisms into interpretable clades.

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.

Mechanism-Based Biological Inference via Multiplex Networks, AI Agents and Cross-Species Translation
This invention provides a platform that uses AI agents and biological networks to uncover and interpret disease-relevant biological mechanisms.

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,

Enzymes for synthesis of sequenced oligoamide triads and tetrads that can be polymerized into sequenced copolyamides.
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

We tested 48 diverse homologs of SfaB and identified several enzyme variants that were more active than SfaB at synthesizing the nylon-6,6 monomer.

We have developed thermophilic bacterial strains that can break down PET and consume ethylene glycol and TPA. This will help enable modern, petroleum-derived plastics to be converted into value-added chemicals.

By engineering the Serine Integrase Assisted Genome Engineering (SAGE) genetic toolkit in an industrial strain of Aspergillus niger, we have established its proof of principle for applicability in Eukaryotes.

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.