Subscribe free to our newsletters via your
. Military Space News .




CARBON WORLDS
Understanding Interface Properties of Graphene Paves Way for New Applications
by Staff Writers
Raleigh NC (SPX) Aug 09, 2013


File image.

Researchers from North Carolina State University and the University of Texas have revealed more about graphene's mechanical properties and demonstrated a technique to improve the stretchability of graphene - developments that should help engineers and designers come up with new technologies that make use of the material.

Graphene is a promising material that is used in technologies such as transparent, flexible electrodes and nanocomposites. And while engineers think graphene holds promise for additional applications, they must first have a better understanding of its mechanical properties, including how it works with other materials.

"This research tells us how strong the interface is between graphene and a stretchable substrate," says Dr. Yong Zhu, an associate professor of mechanical and aerospace engineering at NC State and co-author of a paper on the work.

"Industry can use that to design new flexible or stretchable electronics and nanocomposites. For example, it tells us how much we can deform the material before the interface between graphene and other materials fails. Our research has also demonstrated a useful approach for making graphene-based, stretchable devices by 'buckling' the graphene."

The researchers looked at how a graphene monolayer - a layer of graphene only one atom thick - interfaces with an elastic substrate. Specifically, they wanted to know how strong the bond is between the two materials because that tells engineers how much strain can be transferred from the substrate to the graphene, which determines how far the graphene can be stretched.

The researchers applied a monolayer of graphene to a polymer substrate, and then stretched the substrate. They used a spectroscopy technique to monitor the strain at various points in the graphene. Strain is a measure of how far a material has stretched.

Initially, the graphene stretched with substrate. However, while the substrate continued to stretch, the graphene eventually began to stretch more slowly and slide on the surface instead. Typically, the edges of the monolayer began to slide first, with the center of the monolayer stretching further than the edges.

"This tells us a lot about the interface properties of the graphene and substrate," Zhu says. "For the substrate used in this study, polyethylene terephthalate, the edges of the graphene monolayer began sliding after being stretched 0.3 percent of its initial length. But the center continued stretching until the monolayer had been stretched by 1.2 to 1.6 percent."

The researchers also found that the graphene monolayer buckled when the elastic substrate was returned to its original length. This created ridges in the graphene that made it more stretchable because the material could stretch out and back, like the bellows of an accordion. The technique for creating the buckled material is similar to one developed by Zhu's lab for creating elastic conductors out of carbon nanotubes.

The paper, "Interfacial Sliding and Buckling of Monolayer Graphene on a Stretchable Substrate," was published online Aug. 1 in Advanced Functional Materials. Lead author of the paper is Dr. Tao Jiang, a postdoctoral researcher at NC State. The paper was co-authored by Dr. Rui Huang of the University of Texas. The research was funded by the National Science Foundation (NSF) and the NSF's ASSIST Engineering Research Center at NC State.

.


Related Links
North Carolina State University
Carbon Worlds - where graphite, diamond, amorphous, fullerenes meet






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








CARBON WORLDS
Graphene 'onion rings' have delicious potential
Houston TX (SPX) Jul 19, 2013
Concentric hexagons of graphene grown in a furnace at Rice University represent the first time anyone has synthesized graphene nanoribbons on metal from the bottom up - atom by atom. As seen under a microscope, the layers brought onions to mind, said Rice chemist James Tour, until a colleague suggested flat graphene could never be like an onion. "So I said, 'OK, these are onion rings,'" To ... read more


CARBON WORLDS
Rafael gears up for Israel's new defense era

Early hardware delivery enables deployment of crucial missile defense radar

Israel deploys Iron Dome near Red Sea resort of Eilat

Missile plan to go ahead despite test failure: US

CARBON WORLDS
Raytheon, US Army complete first AI3 guided flight test series

Raytheon demonstrates high-definition, two-color Third Generation FLIR System

Raytheon, Chemring Group plan live missile firing for next phase of CENTURION development

Panama says suspected missile material found on N. Korea ship

CARBON WORLDS
CAE training services, products contracted by U.S., Australia

Navy Turns to UAVs for Help with Radar, Communications

Kerry hopes drone strikes in Pakistan will end 'very soon'

Outside View: Moving to eyes in the sky

CARBON WORLDS
New Military Communications Satellite Built By Lockheed Martin Launches

US Navy Poised to Launch Lockheed Martin-Built Secure Communications Satellite for Mobile Users

Northrop Grumman Moves New B-2 Satellite Communications Concept to the High Ground

Canada links up on secure U.S. military telecoms network

CARBON WORLDS
India moves closer to buying U.S.-made howitzers

Boeing and US Navy Demo New Targeting and Data Systems on EA-18G

F-35B Ready For Sea Trials

U.S. Navy awards contracts for natural resources management

CARBON WORLDS
Colombia aims to raise defense industry profile

US could reduce army by further 15 percent: Hagel

Israeli military exports hit record $7.5B

EADS, Mitsubishi announce restructurings

CARBON WORLDS
Aging Chinese apologise for Cultural Revolution 'evil'

Obama: Putin's Cold War stance chills ties

Russia and US unified by shared responsibility for preventing world conflicts

Chinese ships enter disputed waters: Japan coastguard

CARBON WORLDS
Heterogeneous nanoblocks give polymers an edge

Size matters in nanocrystals' ability to adsorb release gases

Gold nanoparticles improve photodetector performance

Water clears path for nanoribbon development




The content herein, unless otherwise known to be public domain, are Copyright 1995-2014 - Space Media Network. AFP, UPI and IANS news wire stories are copyright Agence France-Presse, United Press International and Indo-Asia News Service. 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