Using a technique called optical forging, researchers were able to create structures that are up to 10 000 times stiffer than unmodified graphene. This is record breaking for a material as thin as this.
Monday, March 22, 2021
Modification of graphene using laser light
Using a technique called optical forging, researchers were able to create structures that are up to 10 000 times stiffer than unmodified graphene. This is record breaking for a material as thin as this.
Luminescent QR security labels based on nanoclusters
Stable solid-state emitting, atomically precise nanoclusters with high photoluminescence quantum yield are promising materials for developing large-area printable electronics, mainly for security prints, wearable LEDs, and healthcare sensors.
New nanoporous material promising for making renewable energy from water
Scientists have developed a material, nanoporous cubic silicon carbide, that exhibits promising properties to capture solar energy and split water for hydrogen gas production.
Janus nanoreactor designed for bifunction of photocatalytic water oxidation/reduction
Researchers report a novel and simple strategy for the synthesis of dual-component Janus nanoreactor with asymmetric structure to realize bifunction of photocatalytic water oxidation/reduction.
A novel nanofiltration membrane for highly-efficient dye/salt separation
Researchers prepared a nanofiltration membrane with a loose and dually charged separation layer based on a simple catechol-amine chemistry surface engineering strategy.
A bilayer hydrogel composite actuator with sensing performance
Researchers have developed a novel asymmetric bilayer carbon nanotubes elastomer/hydrogel composite with integrated actuating and sensing performances.
Tunable smart materials
Researchers demonstrate tunable microparticles that can assemble into larger structures based on the content of attached chemical groups, which may lead to the development of smart sensors or self-healing materials.
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