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[ASAP] In Situ Radical Polymerization and Grafting Reaction Simultaneously Initiated by Fluorinated Graphene

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Langmuir
DOI: 10.1021/acs.langmuir.9b00131

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Colorful graphene solution to a chemical industry bottleneck

A graphene-oxide membrane design inspired by nature swiftly separates solvent molecules.

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Development of graphene with enhanced speed of high frequency signal transmission

Scientists have developed high frequency signal transmission line technology which maximizes carrier concentration of graphene using graphene-amorphous carbon junction structure.

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Next-gen graphene devices with enhanced speed of high frequency signal transmission

Researchers developed next generation core semiconductor technology based on graphene with enhanced high frequency signal transmission speed.

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Flexible, transparent monolayer graphene device for power generation and storage

Researchers developed single-layer graphene based multifunctional transparent devices that are expected to be used as electronics and skin-attachable devices with power generation and self-charging capability.

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[ASAP] Copper-Containing Carbon Feedstock for Growing Superclean Graphene

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Journal of the American Chemical Society
DOI: 10.1021/jacs.9b02068

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Building large graphene aerogel walls

Highly compressible graphene aerogels possess extraordinary properties that exceed the performance of natural materials ? superior compressive elasticity; ultrahigh porosity; outstanding tolerance for harsh environment; large specific surface area; high electrical and thermal conductivity. Now, researchers have fabricated graphene aerogel ‘bricks’ that can be assembled into much larger aerogel structures. These highly oriented and dense microstructures possesses arbitrary macroscale, outstanding compressive strength, superelasticity, and high conductivity.

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Quantum computing with graphene plasmons

A novel material that consists of a single sheet of carbon atoms could lead to new designs for optical quantum computers. Physicists have shown that tailored graphene structures enable single photons to interact with each other.

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Quantum computing with graphene plasmons

In their proposed graphene quantum logic gate, scientists show that if single plasmons are created in nanoribbons made out of graphene, two plasmons in different nanoribbons can interact through their electric fields.

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Stickier than expected: Hydrogen binds to graphene in 10 femtoseconds

By sticking hydrogen atoms to graphene a bandgap can be formed. Now researcher have produced an ‘atomic scale movie’ showing how hydrogen atoms chemically bind to graphene in one of the fastest reactions ever studied.

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