
Filter News
Area of Research
News Type
News Topics
- (-) Grid (7)
- (-) Machine Learning (10)
- (-) Materials Science (15)
- (-) Nuclear Energy (16)
- 3-D Printing/Advanced Manufacturing (13)
- Advanced Reactors (2)
- Artificial Intelligence (9)
- Big Data (12)
- Bioenergy (23)
- Biology (27)
- Biomedical (13)
- Biotechnology (7)
- Buildings (10)
- Chemical Sciences (9)
- Clean Water (7)
- Composites (3)
- Computer Science (14)
- Coronavirus (6)
- Critical Materials (2)
- Cybersecurity (6)
- Energy Storage (13)
- Environment (40)
- Exascale Computing (3)
- Frontier (3)
- Fusion (9)
- High-Performance Computing (11)
- Hydropower (2)
- Isotopes (13)
- ITER (1)
- Materials (9)
- Mathematics (5)
- Mercury (4)
- Microscopy (11)
- Nanotechnology (6)
- National Security (17)
- Neutron Science (10)
- Partnerships (2)
- Physics (16)
- Polymers (5)
- Quantum Computing (1)
- Quantum Science (5)
- Security (7)
- Simulation (8)
- Summit (2)
- Transportation (12)
Media Contacts

As the focus on energy resiliency and competitiveness increases, the development of advanced materials for next-generation, commercial fusion reactors is gaining attention. A recent paper examines a promising candidate for these reactors: ultra-high-temperature ceramics, or UHTCs.
Fehmi Yasin, inspired by a high school teacher, now researches quantum materials at Oak Ridge National Laboratory, aiming to transform information technology with advanced imaging techniques.
Dave Weston studies how microorganisms influence plant health and stress tolerance, using the Advanced Plant Phenotyping Laboratory to accelerate research on plant-microbe interactions and develop resilient crops for advanced fuels, chemicals and

Jairus Hines, an electronics and unmanned systems technician at ORNL, works with airborne, waterborne and ground-based drones. As part of the lab’s Autonomous Systems group, he applies "low and slow" drone technology to radiation detection for national security missions.

Phong Le is a computational hydrologist at ORNL who is putting his skills in hydrology, numerical modeling, machine learning and high-performance computing to work quantifying water-related risks for humans and the environment.

From during his early years at NASA to his current role a researcher and group leader, Peter Fuhr has pushed the boundaries of optical and sensor technology. Fuhr’s path is marked by wacky creativity that can’t confine itself to challenges in a single field. No idea is too far out to try out — and so many of them work that Fuhr has a host of inventions and start-ups under his belt.

The Advanced Plant Phenotyping Laboratory at ORNL utilizes robotics, multi-modal imaging, and AI to enhance understanding of plant genetics and interactions with microbes. It aims to connect genes to traits for advancements in bioenergy, agriculture, and climate resilience. Senior scientist Larry York highlights the lab's capabilities and the insights from a new digital underground imaging system to improve biomass feedstocks for bioenergy and carbon storage.

Daryl Yang is coupling his science and engineering expertise to devise new ways to measure significant changes going on in the Arctic, a region that’s warming nearly four times faster than other parts of the planet. The remote sensing technologies and modeling tools he develops and leverages for the Next-Generation Ecosystem Experiments in the Arctic project, or NGEE Arctic, help improve models of the ecosystem to better inform decision-making as the landscape changes.

Distinguished materials scientist Takeshi Egami has spent his career revealing the complex atomic structure of metallic glass and other liquids — sometimes sharing theories with initially resistant minds in the scientific community.

As a mechanical engineer in building envelope materials research at ORNL, Bryan Maldonado sees opportunities to apply his scientific expertise virtually everywhere he goes, from coast to coast. As an expert in understanding how complex systems operate, he’s using machine learning methods to control the process and ultimately optimize performance.