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Researcher
- Adam M Guss
- Alexey Serov
- Andrzej Nycz
- Jaswinder Sharma
- Josh Michener
- Kuntal De
- Udaya C Kalluri
- Xiang Lyu
- Xiaohan Yang
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- Amit K Naskar
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- Beth L Armstrong
- Biruk A Feyissa
- Carrie Eckert
- Chris Masuo
- Clay Leach
- Debjani Pal
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- Georgios Polyzos
- Gerald Tuskan
- Holly Humphrey
- Ilenne Del Valle Kessra
- Isaiah Dishner
- James Szybist
- Jay D Huenemann
- Jeff Foster
- Joanna Tannous
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- Jonathan Willocks
- Junbin Choi
- Khryslyn G Araño
- Kyle Davis
- Liangyu Qian
- Logan Kearney
- Marm Dixit
- Meghan Lamm
- Michael Toomey
- Michelle Lehmann
- Nihal Kanbargi
- Paul Abraham
- Ritu Sahore
- Serena Chen
- Todd Toops
- Vilmos Kertesz
- Vincent Paquit
- Yang Liu

ORNL has developed a new hybrid membrane to improve electrochemical stability in next-generation sodium metal anodes.

ORNL has developed bacterial strains that can utilize a common plastic co-monomer as a feedstock. This will help enable modern, petroleum-derived plastics to be converted into value-added chemicals.

Free-standing, thin films were fabricated with a binder resulting in nearly an order of magnitude thickness decrease while increasing porosity and activation energy. These effects of such diminished significantly. Free-standing films could be fabricated with a binder.

This technology creates a light and metalless current collector for battery application. Cathodes coated on this new current collector demonstrated similar contact resistance, lower charge transfer resistance and similar or high rate performance.

Due to a genes unique nucleotide sequences acquired through horizontal gene transfer, the gene has a transcriptional repressor activity and innate enzymatic role.

We have developed bacterial strains that can convert sustainable feedstocks and waste feedstocks into chemical precursors for next generation plastics.

ORNL has identified a panel of novel nylon hydrolases with varied substrate and product selectivity.