Placing a thin layer of molybdenum disulfide on diamond enables current flow at room temperature, opening a new pathway for diamond-based electronic devices.
The study combines advanced simulations with real-world testing to predict how feedwater heater tubes, which preheat water before it enters a nuclear reactor, break down over time.
Argonne scientists used artificial intelligence and robotics to conduct more than 6,000 battery chemical experiments in just five months. The effort would have taken many years with traditional experimentation.
Researchers have discovered how to design and place single-photon sources at the atomic scale inside ultrathin 2D materials, lighting the path for future quantum innovations.
The University of Central Florida’s Tinley Park MHC proved victorious in DOE’s CyberForce Competition®, valiantly defending a simulated cyberattack on an offshore oil rig’s control system.
Argonne will play a pivotal role in the national effort to harness artificial intelligence for breakthroughs in scientific discovery, energy innovation, and national security.