Credit: Springer Nature A sub-nanometer buffer improved atomically thin transistors, pushing future chips closer to silicon’s ...
Semiconducting transition metal dichalcogenides (TMDs) are a class of layered materials exhibiting unique optoelectronic properties that could be leveraged to develop transistors, sensors and other ...
This Collection supports and amplifies research related to SDG 9 - Industry, Innovation and Infrastructure. Electronic devices based on 2D semiconductors are considered one of the most promising ...
Two-dimensional (2D) semiconductors, such as MoS 2, enable the unprecedented possibilities to solve the bottleneck of transistor scaling and to build novel logic circuits with faster speed, lower ...
A new technical paper titled “Perspective on radiation effects in nanoscale metal–oxide–semiconductor devices” was published by a researcher at Vanderbilt University, Nashville, Tennessee. The work ...
With the development of carbon nanotubes and graphene, scientists were given an entirely new collection of materials to work with: sheets and tubes that could be consistently made with thicknesses ...
Side-wall MoS 2 transistors with an atomically thin channel and a physical gate length of sub-1 nm using the edge of a graphene layer as the gate electrode Find the technical paper link here.
Downscaling of electronic devices, such as transistors, has reached a plateau, posing challenges for semiconductor fabrication. However, a research team led by materials scientists recently discovered ...
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