News
Two-dimensional materials can be exploited to make a new kind of electronic device that researchers have dubbed an atomristor. In early stage studies, the researchers have demonstrated a possible ...
Researchers have long sought electrically conductive materials for economical energy-storage devices. Two-dimensional (2D) ceramics called MXenes are contenders. Unlike most 2D ceramics ...
Newly developed two-dimensional materials, such as graphene -- which consists of a single layer of carbon atoms -- have the potential to replace traditional microprocessing chips based on silicon ...
It’s all down to the material’s two-dimensional molecular structure, something once thought to be prohibitively difficult in the world of polymer science. The 2D polymer material assembles ...
Scientists have invented a new two-dimensional (2D) material called 'glaphene' that combines the exotic properties of other ...
The scalable method for creating 2D copper boride developed by Professor Mark Hersam could lead to breakthroughs in energy ...
Long range intrinsic ferromagnetism in two dimensional materials and dissipationless future technologies was published in Applied Physics Reviews in November 2018. More information: Babar Shabbir ...
More than ten years ago, researchers at Rice University led by materials scientist Boris Yakobson predicted that boron atoms ...
9d
Interesting Engineering on MSNUS scientists discover new 2D material that could be used in electrochemical energy techA team of Scientists almost a decade ago predicted that boron atoms would cling too tightly to copper to form borophene, a ...
2024.240011 , discusses control of light–matter interactions in two-dimensional materials with nanoparticle-on-mirror structures. Two-dimensional materials have a thickness of only a single or a ...
A researcher from the Chinese Academy of Sciences' Institute of Physics conducts research on two-dimensional (2D ... hundreds of other 2D materials have been fabricated and studied. In most of these, ...
Results that may be inaccessible to you are currently showing.
Hide inaccessible results