In this Thought Leader interview, Professor Gupreet Singh from Kansas State University talks to AZoNano about his work on using 2D nanomaterials such as graphene and tungsten disulfide for electrodes ...
Monolayer films of tungsten disulfide, just three atoms thick, have unique electronic valleys which can be manipulated with laser light. This finding, by MIT physics graduate student Edbert Jarvis Sie ...
In a study published in Nano Letters, Tokyo Metropolitan University researchers created the first tungsten disulfide nanotubes that point in the same direction upon formation. The team’s new synthesis ...
Physicists have induced superconductivity in a monolayer of tungsten disulfide. By using an increasing electric field, they were able to show how the material turns from an insulator into a ...
Tungsten disulfide helps organic solar cell reach 17% efficiency Researchers from Saudi Arabia’s King Abdullah University of Science and Technology claim to have developed a highly performant organic ...
Berkeley Lab scientists have turned to two-dimensional tungsten disulphide to make a disc resonator based laser. WS 2 is a transition metal dichalcogenides (TMDC), which have a natural bandgap making ...
Scientists from the Tohoku University in Japan have fabricated a near-invisible solar cell based on indium tin oxide (ITO) and tungsten disulfide (WS 2) as a transparent electrode and a photoactive ...
(Nanowerk News) Researchers from the Faculty of Materials Science, Lomonosov Moscow State University (MSU) in close collaboration with Faculty of Physics (MSU), Weizmann Institute of Science (Israel), ...
Morning Overview on MSN
Light-driven logic in WS₂ tops 10 THz in ultrafast computing test
Researchers at Politecnico di Milano and CNR-IFN have demonstrated all-optical logic operations in a tungsten disulfide (WS₂) monolayer at rates as high as 10 terahertz, according to a study published ...
[Left] The schematic shows the multi-functions of the 2D-WS2 bottom interfacial layer for interface stability and the vertically well-ordered domain structures of HZO, which leads to excellent ...
The Nature Index 2025 Research Leaders — previously known as Annual Tables — reveal the leading institutions and countries/territories in the natural and health sciences, according to their output in ...
Atomically thin semiconductors such as tungsten disulfide (WS2) are promising materials for future photonic technologies. Despite being only a single layer of atoms thick, they host tightly bound ...
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