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Researchers at the University of California, Riverside have unlocked a hidden power within silicon, the backbone of modern electronics. Their findings could transform how future devices are built, ...
With GPS increasingly vulnerable to tampering, planes need more reliable navigation systems. The magnetic pull in the Earth’s ...
Researchers at the Jülich Research Center and the Leibniz Institute for Innovative Microelectronics (IHP) have developed a ...
To achieve this, the researchers carefully tuned the cooling rate. A fast “thermal quench”—dropping the temperature at around ...
UC Riverside scientists built a molecular silicon switch that controls electricity using quantum interference instead of ...
A series of compounds featuring fused six-membered silicon rings represents a step up in complexity for the class of ...
The research team led by Professor Jun He from Wuhan University has developed a universal metal-assisted epitaxy strategy to produce wafer-scale monolayer MoS2 films with specific substitutional ...
A new silicon material switches from insulator to metal in picoseconds. This breakthrough could speed up future computers.
Abstract: In this paper, we report the impact of lattice-mismatch-induced strain and radial-force-induced strain on the conduction band structures, the acoustic-phonon-limited and ...
In a new scientific paper published in nature, the Chinese manufacturer presented a new tandem perovskite-silicon solar cell based on a bottom cell with a heterojunction design. It also used a new ...
Researchers at the University of California, Riverside, have uncovered how to manipulate electrical flow through crystalline ...