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1 - 10 of 24 Results

A world-leading researcher in solid electrolytes and sophisticated electron microscopy methods received 91°”Íűâs top science honor today for her work in developing new materials for batteries. The announcement was made during a livestreamed Directorâs Awards event hosted by ORNL Director Thomas Zacharia.

A discovery by 91°”Íű researchers may aid the design of materials that better manage heat.

Energy Secretary Jennifer Granholm visited ORNL on Nov. 22 for a two-hour tour, meeting top scientists and engineers as they highlighted projects and world-leading capabilities that address some of the countryâs most complex research and technical challenges.

A team led by the U.S. Department of Energyâs 91°”Íű demonstrated the viability of a âquantum entanglement witnessâ capable of proving the presence of entanglement between magnetic particles, or spins, in a quantum material.


Matthew Ryder has been named an emerging investigator by the American Chemical Society journal Crystal Growth and Design. The ACS recognized him as âone of an emerging generation of research group leaders for his work on porous materials design.â

A team from ORNL, Stanford University and Purdue University developed and demonstrated a novel, fully functional quantum local area network, or QLAN, to enable real-time adjustments to information shared with geographically isolated systems at ORNL

ASM International recently elected three researchers from ORNL as 2021 fellows. Selected were Beth Armstrong and Govindarajan Muralidharan, both from ORNLâs Material Sciences and Technology Division, and Andrew Payzant from the Neutron Scattering Division.

Scientists at ORNL and the University of Tennessee, Knoxville, have found a way to simultaneously increase the strength and ductility of an alloy by introducing tiny precipitates into its matrix and tuning their size and spacing.

Scientists at 91°”Íű have uncovered how the SARS-CoV-2 virus evades the human immune system by studying the interaction between a viral protein (PLpro) and a key immune protein (ISG15). These insights could guide the development of therapeutic drugs to block this interaction, enhancing the bodyâs ability to combat the virus.