Researchers built a four-atom-thick transistor combining an atomically thin semiconductor and molecular crystal. It uses ...
Layered metasurfaces trained as optical neural networks enable multifunctional holograms and security features, integrating ...
Scientists used Atomic Force Microscopy to watch nano droplets in real time, exposing how water interacts with surfaces and ...
A new water-resistant redox-active metal-organic framework stores electrons in acidic aqueous batteries with high durability, ...
Within tissues, cells are embedded in complex, three-dimensional structures known as the extracellular matrix. Their ...
A new impact-based design turns gentle everyday motion into bursts of electricity, greatly boosting the power output of ...
Researchers developed a genetically encoded fluorescence lifetime indicator that enables quantitative imaging of ATP levels ...
(NIR) light. By embedding a phthalocyanine dye into lipid bilayers, the team achieved local heating that modulates membrane ...
Fluorogenic DNA aptamers produce light only in the correct structural state, enabling programmable molecular logic, ...
Water rolls on h-BN but encounters friction on graphene. Atomic structure and substrate shape nanoscale movement, guiding advances in coatings and anti-icing surfaces.
Ultrablack reflects less than 0.5% of light and is useful for cameras, solar panels, and telescopes but is hard to make and ...
Researchers created tough hydrogel artificial tendons, attached them to lab-grown muscle to form a muscle-tendon unit, then ...
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