Electrical Conduction in Graphene and Nanotubes. Shigeji Fujita, Akira Suzuki

Electrical Conduction in Graphene and Nanotubes


Electrical.Conduction.in.Graphene.and.Nanotubes.pdf
ISBN: 9783527411511 | 306 pages | 8 Mb


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Electrical Conduction in Graphene and Nanotubes Shigeji Fujita, Akira Suzuki
Publisher: Wiley



PubMed Abstract | Publisher Full Text OpenURL. May 20, 2010 - The electric charge carriers in graphene are negative electrons and positive holes, which in turn are affected by plasmons—density oscillations that move like sound waves through the “liquid” of all the electrons in the material. Feb 11, 2014 - Our proposed model is capable of performing the electrical detection of DNA molecules by modelling the conductance of the graphene sheets. Mar 18, 2014 - Now, graphene (a single atomic layer of graphite), carbon nanotubes (cylindrical nanostructures of carbon), and buckyballs (C60), are revolutionizing technology and nanotechnology. Based on the sensing mechanism inspired by the experiment to investigate the effect of .. Zheng M, Jagota A, Semke ED, Diner BA, McLean RS, Lustig SR, Richardson RE, Tassi NG: DNA-assisted dispersion and separation of carbon nanotubes. Aug 10, 2011 - They report building nanotubes of graphene (a meshwork of only carbon atoms) and sulphur that have shown effective in encapsulating nanoscale—just a few molecules—reactions. Jan 29, 2014 - Existing forms of carbon basically consist of sheets of graphene, either bonded on top of each other to form a solid material like the graphite in your pencil, or rolled up into carbon nanotubes (think of a single-walled carbon nanotube as a graphene cylinder) or folded into For instance, it was found that graphene remains capable of conducting electricity even at the limit of nominally zero carrier concentration because the electrons don't seem to slow down or localize. Apr 14, 2014 - The resulting rebar graphene also exhibits better electrical conductivity than graphene produced through other CVD processes. May 21, 2014 - Some materials scientists want to make carbon fibers out of nanomaterials, such as graphene and carbon nanotubes, to take advantage of the materials' strength, as well as their high electrical and thermal conductivity. €�Nanoribbons—far from being simple flat and linear structures—possess an unprecedented helical twist that changes over time, giving scientists a way of controlling physical properties of the nanoribbon, such as electrical conductivity,” Andrei Khlobystov of the University of Nottingham.





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