Phys.org

Graphene nanowrinkles could reshape electricity in future ultrathin devices

Graphene nanowrinkles could reshape electricity in future ultrathin devicesWorldPing

Rice University researchers have shown that tiny wrinkles in graphene can change the material's electrical properties, providing evidence for flexoelectricity, a phenomenon in which a material generates an electric charge when it bends unevenly.

This is a short WorldPing brief. The full report was published by Phys.org.

Read the full report at Phys.org

Related news

Cutting traffic pollution alone could worsen Taiwan's hazeWorldPing
Phys.org

Cutting traffic pollution alone could worsen Taiwan's haze

Taiwan's air has gotten measurably cleaner over the past decade, yet in many towns the hazy, milky-white sky that blurs mountains and city skylines has not cleared at the same pace. A research team led by Prof.

Brief by WorldPing · Original reporting by Phys.org

We should decide how AI shapes the future, not tech firmsWorldPing
New Scientist

We should decide how AI shapes the future, not tech firms

OpenAI and its competitors want to dictate the role that artificial intelligence will play in our society – it's time to take back control of the narrative…

Brief by WorldPing · Original reporting by New Scientist

What's happening with Lewis-Skelly's Arsenal future?WorldPing
BBC Sport

What's happening with Lewis-Skelly's Arsenal future?

Myles Lewis-Skelly's long-term future at Arsenal has been debated since he slipped down the pecking order last season - will he stay with the Gunners with interest reportedly shown elsewhere?

Brief by WorldPing · Original reporting by BBC Sport

TechCrunch

Why Stream ring-maker Sandbar says the future of AI wearables is voice

AI notetaking hardware has taken off over the past couple of years, with credit-card-sized devices, pendants, pins, and even transcribing earbuds all promising to capture your meetings and turn them into summaries and action items.

Brief by WorldPing · Original reporting by TechCrunch