Category Technology/Electronics

From Trees to Power: Engineers build Better Energy Storage Device

Lightweight and high-power density capacitors are of particular interest for the development of hybrid and electric vehicles. The fast-charging devices allow for significant energy saving, because they can accumulate energy during braking and release it during acceleration. Credit: Xuan Yang and Kevin Yager

Lightweight and high-power density capacitors are of particular interest for the development of hybrid and electric vehicles. The fast-charging devices allow for significant energy saving, because they can accumulate energy during braking and release it during acceleration. Credit: Xuan Yang and Kevin Yager

New work demonstrates an improved 3D energy storage device constructed by trapping functional nanoparticles within the walls of a foam-like structure made of nanocellulose. The foam is made in one step and can be used to produce more sustainable capacitor devices with higher power density and faster charging abilities compared to rechargeable batteries...

Read More

Candle Soot could be used to power Li ion batteries for plug-in hybrid electric cars

 

The discovery opens up the possibilities to use carbon in more powerful batteries, driving down the costs of portable power. Lithium ion batteries power many devices, from smartphones and digital cameras all the way up to cars and even aircraft. The batteries work by having 2 electrically charged materials suspended in a liquid to produce a current. Carbon is used as one of those materials in smaller batteries, but for bigger, more powerful batteries – such as those used in electric cars – carbon is not suitable because of its structure, which cannot produce the required current density.

Collecting candle soot from the (a) tip of the flame and (b) middle of the ...

Collecting candle soot from the (a) tip of the flame and (b) middle of the flame. SS current collector (c) before and (d) after deposition of carbon soot.

Dr. Chandra Sharma and Dr...

Read More

Graphene teams up with 2D Crystals for Faster Data Communications

Graphene/WSe2 (2-D material)/graphene heterostructure. Credit: ICFO-Fabien Vialla

Graphene/WSe2 (2-D material)/graphene heterostructure. Credit: ICFO-Fabien Vialla

A 2D crystal, combined with graphene, has the capability to detect optical pulses with a response faster than 10 picoseconds, while maintaining a high efficiency, a new study demonstrates. Ultra-fast detection of light lies at the heart of optical communication systems nowadays. Driven by the internet of things and 5G, data communication bandwidth is growing exponentially, thus requiring even faster optical detectors that can be integrated into photonic circuits.

Prof Frank Koppens’s team has shown that a 2D crystal, combined with graphene, has the capability to detect optical pulses with a response faster than 10 picoseconds, while maintaining a high efficiency...

Read More

Crucial Hurdle Overcome in Quantum Computing

This image shows inside the laboratories at ANFF, where the researchers designed and built the world's first two-qubit logic gate. Credit: UNSW

This image shows inside the laboratories at ANFF, where the researchers designed and built the world’s first two-qubit logic gate. Credit: UNSW

Quantum logic gate in silicon built for the for the first time, making calculations between 2 qubits of information possible – and thereby clearing the final hurdle to making silicon quantum computers a reality. “What we have is a game changer,” said Andrew Dzurak, Scientia Professor and Director of the Australian National Fabrication Facility at UNSW. “Because we use essentially the same device technology as existing computer chips, we believe it will be much easier to manufacture a full-scale processor chip than for any of the leading designs, which rely on more exotic technologies.”

In classical computers, data is rendered as binary bits, which ...

Read More