Graphene Nanomesh. Credit: Hiroshi Mizuta, JAIST Researchers at Japan advanced institute of science and technology (JAIST) have successfully fabrication the suspended graphene nanomesh in a…
Posts published in “2D Materials”
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Corrugations in graphene slow down the pace of traveling electrons. By pulling on the graphene sheet on two opposite sides, it is flattened and smoothed,…
What goes in is not what comes out with a spatio-temporally modulated metasurface reflector. Credit: Los Alamos National Laboratory Electronically controlled 2-D reflector promises improved…
A new graphene amplifier has been able to unlock hidden frequencies in the electromagnetic spectrum. Researchers have created a unique device that will unlock the…
Illustration of an integrated micro-ring resonator based low loss optical cavity with semiconductor 2D material on top of the waveguide. Credit: Ipshita Datta and Aseema…
Physicists may have accidentally discovered a new state of matter. The possibilities are endless. Humans have been studying electric charge for thousands of years, and…
Carbon black powder turns into graphene in a burst of light and heat through a technique developed at Rice University. Flash graphene turns any carbon…
This image shows atomically thin semiconductor wafers (MoS2 monolayers, lateral dimension of each panel ~ 1cm, wafer thickness of only ~0.7 nm). We obtained these…
Artistic view of a junction of different 2D light-emitting materials. Credit: © Xavier Ravinet Researchers from UNIGE and the University of Manchester have discovered structures…
Scientists recorded the formation of laser-induced graphene made with a small laser mounted to a scanning electron microscope. Credit: Tour Group/Rice University You don’t need…
Materials that can slow the cooling of highly energetic hot carriers could capture extra energy from the Sun. Two-dimensional solar materials may offer a way…
Physicists from the Moscow Institute of Physics and Technology and the Institute for High Pressure Physics of the Russian Academy of Sciences have used computer…
A low-temperature atomic force microscope with a single carbon atom at the tip allows quantitative measurement of forces between sample and tip. With two-dimensional silicon…
Illustration of controlled rotation of boron nitride (BN) layers above and below a graphene layer introduce coexisting moiré superlattices, which change size, symmetry, and complexity…
Local distortions in the surface push electrons close to defects. Only the combination of defects and strain can explain the new kind of quantum light.…