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Integrating 2D materials into sustainable electronic devices presents key challenges, particularly in depositing or etching ...
H-NbO₂—a novel van der Waals oxide synthesized by researchers from Japan—exhibits strongly correlated electronic properties ...
H-NbO2, created by ion extraction from LiNbO2, combines 2D flexibility with correlated states like superconductivity, ...
Researchers investigated the fatigue behavior of 2D hybrid materials, opening doors to their widespread use in real-world applications. Researchers investigated the fatigue behavior of 2D hybrid ...
Materials that are incredibly thin, only a few atoms thick, exhibit unique properties that make them appealing for energy storage, catalysis and water purification. Researchers have now developed a ...
Finding new materials with useful properties is a primary goal for materials scientists, and it's central to improving technology. One exciting area of current research is 2D materials—super-thin ...
Wrinkles can be an asset. Scientists at Rice University have discovered that tiny creases in two-dimensional (2D) materials can control electron spin with record precision, opening the way for ...
Two-dimensional nanomaterials only a few atoms thick are being pushed to new frontiers, with scientists synthesizing MXenes ...
Layered two-dimensional (2D) materials occur in many electronic varieties ranging from the standard metals, insulators, and semiconductors to topological insulators, superconductors, ferromagnets, ...
Advancements in nanotechnology fabrication and characterization tools have facilitated a number of developments in the creation of new two-dimensional (2D) materials and gaining and understanding of ...
H-NbO₂—a novel van der Waals oxide synthesized by researchers from Japan—exhibits strongly correlated electronic properties ...