A multi-institutional research team led by Osaka University has engineered a way to preserve the electrical properties of ...
4 天
AZoNano on MSNHexagonal Boron Nitride Atomristors: A Low-Power Solution for Neuromorphic ComputingBN atomristors offer a low-power, high-memory solution for neuromorphic computing. With an ultra-large memory window and minimal energy consumption, these devices are a step toward next-gen AI ...
18 天
Interesting Engineering on MSNUS scientists spot new class of quantum particles in world-first breakthroughIn a first, US researchers have observed fractional excitons, a new class of quantum particles, that were only theoretically known to exist so far.
2 天
Tech Xplore on MSNPowering the future—ultrathin films enhance electrical conductivity in flexible electronicsWhat if your electronic devices could adapt on the fly to temperature, pressure, or impact? Thanks to a new breakthrough in ...
A research group recently discovered the disappearance of nonreciprocal second harmonic generation (SHG) in MnPSe₃ when ...
They tested two versions of the novel encapsulant. One with two-dimensional fillers made of a boron nitride material (PIB:h-BN) and one without. The cells measured 1 cm2, while the modules had an ...
Professor Yap is interested in the fundamentals of synthesis, characterization, and applications of quantum materials and nanomaterials, including B-C-N nanostructures (carbon, boron nitride, boron ...
The modified material was then exposed to flowing ammonia at 1000 °C, which resulted in sodium-doped amorphous silicon-boron-nitride (Na-doped SiBN). Using cutting-edge spectroscopic techniques ...
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