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Characterization news, June 2020

Researchers have detected signatures of a cascade of energy transitions that could help explain how superconductivity arises in magic-angle graphene.

Scientists have developed an open-source program called SEMseg to count and characterize nanoparticles from scanning electron microscope images.

The spontaneous formation of hollow structures in nanoscale antimony crystals could increase the energy density of lithium-ion batteries.

By combining them with fluorescent molecules, researchers have, for the first time, been able to study the real-time dynamics of boron nitride nanotubes.

At very high temperatures and pressures, nitrogen can adopt the same 2D crystalline structure as black phosphorus.

By inserting metal atoms between transition metal dichalcogenide monolayers, researchers have created a whole new library of 2D materials.

A felt of nickel microfibers has the optimum combination of surface area and bubble release for producing hydrogen via electrolysis.

Scientists have uncovered evidence that the 2D material tungsten ditelluride conducts electricity in very narrow channels at its outer edges.

The transport of electronic charge in a strontium ruthenate superconductor breaks the rotational symmetry of the underlying crystal lattice.

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Researchers have shown that conerting waste plastics into graphene by rapid flash Joule heating also results in the production of hydrogen.

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Researchers used mechanochemistry to characterize how a polymer chain in solution responds to a sudden acceleration of the solvent flow around it.

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industrial thermoplastic composite waste can be recycled into filaments for additive manufacturing

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By dispersing single atoms of platinum on a sheet of molybdenum sulphide, researchers have developed an inexpensive catalyst for splitting water.

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