A 444-chamber microfluidic platform shows how contact density, initial infection levels and non-susceptible cells shape ...
Engineers have developed a flexible motor just a few millimeters thick. Made of two nested fibers wrapped with electrodes, the device produces enough force to drive soft robotic systems.
Astronomers detect fully deuterated methanol in space for the first time, finding it about 100 times more abundant than chemical models predict.
Polymer-protected MXene combined with copper nanoparticles withstands water exposure and increases photocatalytic ...
Atomic-scale see-saws control spin interactions as scanning tunnelling microscopy tunes coupling between spins in a 2D metal-organic framework and metal electrons.
Researchers create smooth, oxide-free potassium films that sharply reduce optical losses while confining light at the nanoscale, opening possibilities for advanced photonic devices.
Researchers develop manganese-doped carbon nanodots that deliver strong MRI contrast, show low toxicity and clear rapidly from the body, offering a potential alternative to gadolinium-based agents.
Atomic fluctuations sustain and enhance photocurrent in crystals previously thought too symmetric for this effect, revealing a potential route to more efficient solar cells.
Reproducing such three-dimensional microbial environments in the laboratory, however, is not easy. Conventional methods have typically relied on gels and other materials to hold 3D structures in place ...
A study of 21 dusty star systems reveals how debris composition distinguishes violent impacts between Mars-sized bodies from ...
Researchers use nanoscale self-organization to create lead-free piezoelectric ceramics with exceptional heat tolerance, opening possibilities for high-temperature sensors and actuators.
The position of biomineralization peptides within liposomes can influence how gold nanoparticles grow. Peptides localized at ...
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