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Researcher
- Amit Shyam
- Alex Plotkowski
- Lawrence {Larry} M Anovitz
- Alexey Serov
- James A Haynes
- Jaswinder Sharma
- Ryan Dehoff
- Sumit Bahl
- Xiang Lyu
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- Georgios Polyzos
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- Gordon Robertson
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- Junbin Choi
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- Marm Dixit
- Meghan Lamm
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- Michelle Lehmann
- Nicholas Richter
- Nihal Kanbargi
- Peeyush Nandwana
- Peng Yang
- Peter Wang
- Rangasayee Kannan
- Ritu Sahore
- Roger G Miller
- Sai Krishna Reddy Adapa
- Sarah Graham
- Sudarsanam Babu
- Sunyong Kwon
- Todd Toops
- William Peter
- Ying Yang
- Yukinori Yamamoto

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.

Currently available cast Al alloys are not suitable for various high-performance conductor applications, such as rotor, inverter, windings, busbar, heat exchangers/sinks, etc.

The invented alloys are a new family of Al-Mg alloys. This new family of Al-based alloys demonstrate an excellent ductility (10 ± 2 % elongation) despite the high content of impurities commonly observed in recycled aluminum.

The lack of real-time insights into how materials evolve during laser powder bed fusion has limited the adoption by inhibiting part qualification. The developed approach provides key data needed to fabricate born qualified parts.

An electrochemical cell has been specifically designed to maximize CO2 release from the seawater while also not changing the pH of the seawater before returning to the sea.

The ORNL invention addresses the challenge of poor mechanical properties of dry processed electrodes, improves their electrical properties, while improving their electrochemical performance.

Hydrogen is in great demand, but production relies heavily on hydrocarbons utilization. This process contributes greenhouse gases release into the atmosphere.

Mineral looping is a promising method for direct air capture of CO2. However, reduction of sorbent reactivity after each loop is likely to be significant problems for mineral looping by MgO.

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