If quantum computing is going to become an every-day reality, we need better superconducting thin films, the hardware that enables storage and processing of quantum information. Too often, these thin ...
The introduction of a nanometric germanium oxide layer drastically improved device performance and stability. As the global demand for clean energy accelerates, solar power continues to attract ...
Scientists create perovskite film semiconductors at room temperature using lasers, which is a revolution for chips and solar ...
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Long-standing limitation in thin-film solar cells resolved with nanometric germanium oxide layer
As the world urgently seeks clean energy solutions, solar power stands out for its abundance and scalability compared to ...
Scientists at the RIKEN Center for Emergent Matter Science (CEMS) in Japan have discovered a way to make a superconducting thin film from iron telluride, which is surprising because it is not normally ...
The efficieny result represents one of the best performances ever achieved for this kind of thin-film solar cell to date. The device was fabricated with a rear contact interface that reportedly ...
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The thin red line: 1998 war film surges on HBO Max
Terrence Malick's 1998 war movie The Thin Red Line, starring Sean Penn and Jim Caviezel, is seeing a streaming surge on HBO Max.
Thin films form the basis of many industries today, including semiconductors, electric vehicles, smart optical coatings, sophisticated medical equipment, and protective layers on high-temperature ...
Thin films continue to draw the focus of researchers. This article takes a current and closer look at their applications, variable deposition methods, and future uses. ‘Thin Film’ is a relative term ...
The S2F and S3F series are offered in 0402, 0603, and 1206 case sizes and support rated currents from 0.315 A to 7 A. Both ...
Often no thicker than a piece of paper, thin-film solar panels are among the least visible advancements in renewable energy technology today. Unlike traditional silicon panels, which are rigid and ...
Semiconductor devices are becoming thinner and more complex, making thin deposited films even harder to measure and control. With 3nm node devices in production and 2nm nodes ramping toward ...
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