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Carbon Nanotube and Graphene Device Physics book

Carbon Nanotube and Graphene Device Physics. H. S. Philip Wong, Deji Akinwande

Carbon Nanotube and Graphene Device Physics


Carbon.Nanotube.and.Graphene.Device.Physics.pdf
ISBN: 0521519055,9780521519052 | 263 pages | 7 Mb


Download Carbon Nanotube and Graphene Device Physics



Carbon Nanotube and Graphene Device Physics H. S. Philip Wong, Deji Akinwande
Publisher: Cambridge University Press




Book: Carbon Nanotube and Graphene Device Physics Author: H.-S. Thermostability, Photoluminescence, and Electrical Properties of Reduced Graphene Oxide–Carbon Nanotube Hybrid Materials 1 Nanjing National Laboratory of Microstructures, Physics Department, Nanjing University, Nanjing 210093, China 2 College of Physics and Technology, Guangxi Normal University, Guilin 541004, China 3 Key Laboratory for The RGO–CNTs therefore have important potential applications in the fields of photonic and electrical devices. Now researchers at Aalto University in Finland, the A.M. Carbon Nanotube and Graphene Device Physics 425 pages | Aug 31 2010 |ISBN: 0521519055| PDF | 5.5 Mb Explaining the properties and performance of practical nanotube devices and related appli. HS Philip Wong and Deji Akinwande, CAmbridge, 2011, ~p251, $100. Graphene, a 2D carbon nanomaterial with a honeycomb-like structure, has been the subject of a considerable interest after being the subject of the 2010 Nobel Prize for Physics. Until now, however, resistance at the connections between the carbon structures and conventional silicon electronics has been too high to make the devices practical. Physicists from Umeå University and Finland have found an efficient way to synthesize graphene nanoribbons directly inside of single-walled carbon nanotubes. Philip Wong and Deji Akinwande. Carbon Nanotube and Graphene Device Physics / H. Graphene has been holding the spotlight for so long in nanomaterial research now that we are beginning to forget that carbon nanotubes were once the rock star of nanomaterials for a post-silicon world. Carbon nanotube and graphene device modeling and simulation. Nazarpour has extensive experience in advanced carbon nanomaterials such as carbon nanotube and graphene, device physics, materials processing and integration. Language: English ISBN10: 0521519055. Product Description Explaining a properties as well as opening of unsentimental nanotube inclination as well as associated applications, this is a initial rudimentary text upon a subject. Spooky action put to order: Physicists classify different types of 'entanglement'. Exploding Carbon Nanotubes Could Work as Drug-Based Delivery Devices. Carbon nanotubes can be used in a variety of different contexts. 180] at room temperature, tunable band-gap (for few-layer graphene), high chemical and mechanical stability, low electrical noise, high thermal conductivity, and biocompatibility, have led it to be used in many advanced devices ranging from ultra-capacitors to spintronic devices [181–186]. The researchers believe the technique could also be used to connect multi-layered graphene to metal contacts, though their published research has so far focused on carbon nanotubes. Cambridge, UK: Cambridge, 2011.

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