Coal-Derived Carbon Nanodots Offer a Primer for Atomically Thin Transistors
Researchers at the University of Illinois Urbana-Champaign and the National Energy Technology Laboratory showed that coal-derived carbon nanodots enable the ...
Researchers at the University of Illinois Urbana-Champaign and the National Energy Technology Laboratory showed that coal-derived carbon nanodots enable the ...
Researchers have developed an etching-flux technique that forces single-crystal 2D semiconductors to nucleate deterministically at pattern centres, enabling high-mobility transistors ...
Researchers have created a flexible memristor based on hexagonal boron nitride whose synaptic strength is programmed directly by bending, mimicking ...
First-principles calculations reveal that a new boron-carbon-nitride monolayer remains stable under wide tensile strain while its bandgap, light absorption, and ...
Researchers in China have grown a nanoflower-like FeOOH/MXene composite by electrodeposition that delivers high areal capacitance and long cycling stability ...
Fluorescent defects in atomically thin hexagonal boron nitride can detect and identify individual ions in liquids through spectral shifts, enabling ...
Researchers at the University of Osaka have directly observed a heavy-fermion state forming at the interface between a one-atom-thick ytterbium-copper ...
Researchers at The Hong Kong Polytechnic University have built a two-dimensional bismuth and indium selenide tunnelling transistor that beats the ...
A new density functional theory study identifies silicon-substituted titanium, zirconium, and hafnium selenide monolayers as stable, metallic, fast-diffusing anode candidates ...
Researchers found that HTaWO6 nanosheets spontaneously roll into nanotubes, slashing conductivity anisotropy and enabling record out-of-plane proton conduction and strong ...
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© 2025 Scienmag - Science Magazine