. Military Space News .




.
NANO TECH
How Graphene's Electrical Properties Can Be Tuned
by Staff Writers
Riverside, CA (SPX) Oct 05, 2011

In Bernal-stacked trilayer (ABA), the top (third) sheet is exactly on top of the lowest sheet. In rhombohedral-stacked (ABC) trilayer, the top sheet is shifted by the distance of an atom, so that the top (third) sheet and the lowest sheet form a Bernal stacking as well. Photo credit: Lau lab, UC Riverside.

An accidental discovery in a physicist's laboratory at the University of California, Riverside provides a unique route for tuning the electrical properties of graphene, nature's thinnest elastic material. This route holds great promise for replacing silicon with graphene in the microchip industry.

The researchers found that stacking up three layers of graphene, like pancakes, significantly modifies the material's electrical properties. When they fabricated trilayer graphene in the lab and measured its conductance, they found, to their surprise, that depending on how the layers were stacked some of the trilayer graphene devices were conducting while others were insulating.

"What we stumbled upon is a simple and convenient 'knob' for tuning graphene sheets' electrical properties," said Jeanie Lau, an associate professor of physics and astronomy, whose lab made the serendipitous finding.

Study results appeared online Sept. 25 in Nature Physics.

Graphene is a one-atom thick sheet of carbon atoms arranged in hexagonal rings. Bearing excellent material properties, such as high current-carrying capacity and thermal conductivity, this "wonder material" is ideally suited for creating components for semiconductor circuits and computers.

Because of the planar and chicken wire-like structure of graphene, its sheets lend themselves well to stacking in what is called 'Bernal stacking,' the stacking fashion of graphene sheets.

In a Bernal-stacked bilayer, one corner of the hexagons of the second sheet is located above the center of the hexagons of the bottom sheet. In Bernal-stacked trilayer (ABA), the top (third) sheet is exactly on top of the lowest sheet. In rhombohedral-stacked (ABC) trilayer, the top sheet is shifted by the distance of an atom, so that the top (third) sheet and the lowest sheet form a Bernal stacking as well.

"The most stable form of trilayer graphene is ABA, which behaves like a metal," Lau explained. "Amazingly, if we simply shift the entire topmost layer by the distance of a single atom, the trilayer - now with ABC or rhombohedral stacking - becomes insulating. Why this happens is not clear as yet. It could be induced by electronic interactions. We eagerly await an explanation from theorists!"

Her lab used Raman spectroscopy to examine the graphene devices' stacking orders. Next the lab plans to investigate the nature of the insulating state in ABC-stacked graphene. In this kind of stacked graphene, they also plan to study the band gap - a range in energy, critical for digital applications, in which no electrons can exist.

"The presence of the gap in ABC-stacked graphene that arises, we believe, from enhanced electronic interactions is interesting since it is not expected from theoretical calculations," Lau said. "Understanding this gap is particularly important for the major challenge of band gap engineering in graphene electronics."

Besides graphene, Lau studies nanowires and carbon nanotubes. Her research has helped physicists gain fundamental understanding of how atoms and electrons behave when they are ruled by quantum mechanics. Her lab studies novel electrical properties that arise from the quantum confinement of atoms and charges to nanoscale systems. Her research team has shown that graphene can act as an atomic-scale billiard table, with electric charges acting as billiard balls.

Lau, a member of UCR's Center for Nanoscale Science and Engineering, was joined in the research by W. Bao (the first author of the research paper), L. Jing, J. Velasco Jr., Y. Lee, G. Liu, D. Tran and M. Bockrath at UCR; B. Stanley at Caltech; M. Aykol and S. B. Cronin at the University of Southern California; D. Smirnov at the National High Magnetic Field Laboratory, Fla.; M. Koshino at Tohoku University, Japan; and E. McCann at Lancaster University, United Kingdom.

Related Links
Center for Nanoscale Science and Engineering
Nano Technology News From SpaceMart.com
Computer Chip Architecture, Technology and Manufacture




.
.
Get Our Free Newsletters Via Email
...
Buy Advertising Editorial Enquiries






.

. Comment on this article via your Facebook, Yahoo, AOL, Hotmail login.

Share this article via these popular social media networks
del.icio.usdel.icio.us DiggDigg RedditReddit GoogleGoogle



NANO TECH
Hydrogen released to fuel cell more quickly when stored in metal nanoparticles
Delft, Germany (SPX) Sep 30, 2011
Researchers from TU Delft and VU University Amsterdam in the Netherlands have demonstrated that the size of a metal alloy nanoparticle influences the speed with which hydrogen gas is released when stored in a metal hydride. The smaller the size of the nanoparticle, the greater the speed at which the hydrogen gas makes its way to the fuel cell. The researchers publish their findings in the ... read more


NANO TECH
Russia renews demands for missile shield 'guarantees'

Northrop Grumman Receives Systems Engineering Contract for MDA Precision Tracking Space System

NATO commander visits Turkey for talks on missile defence

Turkey's NATO radar to protect arch-foe: Iran

NANO TECH
Alarm rises over missing Libyan missiles

Thousands of Libya missiles on the loose

Iran equips marine forces with 'cruise' missile

Boeing CHAMP Missile Completes First Flight Test

NANO TECH
US drone kills three militants in NW Pakistan: officials

US drone kills three Taliban in Pakistan: officials

AeroVironment Receives Order from USAF for Raven UAS

Militants flee US drone strike in Pakistan: officials

NANO TECH
NRL TacSat-4 Launches to Augment Communications Needs

US Space Completes Study for USAF and Identifies Cost-Effective Ways to Procure MILSATCOM

Northrop Grumman Tech Pivotal in US Marine Corps' MTAOM Command and Control System

Proton-M puts military purpose spacecraft into orbit

NANO TECH
Israeli bunker-busters cause Mideast alarm

Elbit Systems to Supply the Israeli MoD with Cardom Systems

Groundbreaking Radar Pinpoints Impact of Rapid Shell Fire for US Navy and Army

Tactical Air Defense Services' Super Tucano Aircraft Delivered and Flying

NANO TECH
Arabs plan $63 billion air power buildup

Iraq likely to order another 18 F-16s

China relying less on Russia for weapons, energy: think tank

Brazil in 'urgent' need of fighter jets: minister

NANO TECH
Turkey builds Mideast profile

US a 'committed partner and friend' of China: Clinton

Dalai Lama's visa request leaves S.Africa in a bind

Outside View: America's most testing epoch

NANO TECH
Boeing and BAE Systems to Develop Integrated Directed Energy Weapon for US Navy


.

The content herein, unless otherwise known to be public domain, are Copyright 1995-2011 - Space Media Network. AFP and UPI Wire Stories are copyright Agence France-Presse and United Press International. ESA Portal Reports are copyright European Space Agency. All NASA sourced material is public domain. Additional copyrights may apply in whole or part to other bona fide parties. Advertising does not imply endorsement,agreement or approval of any opinions, statements or information provided by Space Media Network on any Web page published or hosted by Space Media Network. Privacy Statement