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Researcher
- Sheng Dai
- Parans Paranthaman
- Rama K Vasudevan
- Bishnu Prasad Thapaliya
- Sergei V Kalinin
- Yongtao Liu
- Zhenzhen Yang
- Amit K Naskar
- Craig A Bridges
- Edgar Lara-Curzio
- Kevin M Roccapriore
- Maxim A Ziatdinov
- Shannon M Mahurin
- Frederic Vautard
- Ilja Popovs
- Jaswinder Sharma
- Kyle Kelley
- Li-Qi Qiu
- Logan Kearney
- Michael Toomey
- Nihal Kanbargi
- Saurabh Prakash Pethe
- Tolga Aytug
- Uday Vaidya
- Ahmed Hassen
- Alexei P Sokolov
- Anees Alnajjar
- Anton Ievlev
- Arit Das
- Arpan Biswas
- Benjamin L Doughty
- Ben Lamm
- Beth L Armstrong
- Bruce Moyer
- Christopher Bowland
- Eric Wolfe
- Felix L Paulauskas
- Gerd Duscher
- Holly Humphrey
- Jayanthi Kumar
- Kaustubh Mungale
- Liam Collins
- Mahshid Ahmadi-Kalinina
- Marti Checa Nualart
- Meghan Lamm
- Nageswara Rao
- Neus Domingo Marimon
- Nidia Gallego
- Olga S Ovchinnikova
- Phillip Halstenberg
- Robert E Norris Jr
- Sai Mani Prudhvi Valleti
- Santa Jansone-Popova
- Santanu Roy
- Shajjad Chowdhury
- Stephen Jesse
- Subhamay Pramanik
- Sumit Gupta
- Sumner Harris
- Tao Hong
- Tomonori Saito
- Utkarsh Pratiush
- Uvinduni Premadasa
- Vera Bocharova
- Vlastimil Kunc

Efficient thermal management in polymers is essential for developing lightweight, high-strength materials with multifunctional capabilities.

Dual-GP addresses limitations in traditional GPBO-driven autonomous experimentation by incorporating an additional surrogate observer and allowing human oversight, this technique improves optimization efficiency via data quality assessment and adaptability to unanticipated exp

The disclosure is directed to optimized fiber geometries for use in carbon fiber reinforced polymers with increased compressive strength per unit cost. The disclosed fiber geometries reduce the material processing costs as well as increase the compressive strength.

A novel strategy was developed to solve the limitations of the current sorbent systems in CO2 chemisorption in terms of energy consumption in CO2 release and improved CO2 uptake capacity.

This invention introduces a novel sintering approach to produce hard carbon with a finely tuned microstructure, derived from biomass and plastic waste.

A novel and cost-effective process for the activation of carbon fibers was established.
Contact
To learn more about this technology, email partnerships@ornl.gov or call 865-574-1051.

The increasing demand for high-purity lanthanides, essential for advanced technologies such as electronics, renewable energy, and medical applications, presents a significant challenge due to their similar chemical properties.

The invention introduces a novel, customizable method to create, manipulate, and erase polar topological structures in ferroelectric materials using atomic force microscopy.

With the ever-growing reliance on batteries, the need for the chemicals and materials to produce these batteries is also growing accordingly. One area of critical concern is the need for high quality graphite to ensure adequate energy storage capacity and battery stability.

Scanning transmission electron microscopes are useful for a variety of applications. Atomic defects in materials are critical for areas such as quantum photonics, magnetic storage, and catalysis.