A new microscopy technique allows scientists to see single-atom-thick boron nitride by making it glow under infrared light.
Researchers from the Physical Chemistry and Theory departments at the Fritz Haber Institute have found a new way to image layers of boron nitride that are only a single atom thick. This material is ...
Researchers from Skoltech Engineering Center's Hierarchically Structured Materials Laboratory have developed a new method to ...
Diamond tool. NV single spin magnetometry provides direct quantitative nanoscale measurements of 2D crystal magnetism. Credit: Quantum Sensing Group, University of Basel. Key to the interest in 2D ...
have found a new way to image layers of boron nitride that are only a single atom thick. This material is usually nearly invisible in optical microscopes because it has no optical resonances. To ...
Researchers from the Physical Chemistry and Theory departments at the Fritz Haber Institute have found a new way to image layers of boron nitride that are only a single atom thick. This material is ...
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