Subbiah Alwarappan's Graphene-Based Materials: Science and Technology PDF

By Subbiah Alwarappan

ISBN-10: 1439884277

ISBN-13: 9781439884270

ISBN-10: 1439884455

ISBN-13: 9781439884454

Continuously studied considering the fact that its discovery, graphene bargains really exact possibilities, simply because not like so much semiconductor platforms, its second digital states should not buried deep below the skin and it may be simply accessed without delay by way of tunneling or by means of different neighborhood probes. An in-depth research of contemporary advances in graphene learn, Graphene-Based fabrics: technological know-how and Technology discusses synthesis, houses, and their vital functions in numerous fields. It examines tools for synthesis of graphene in addition to floor characterization, homes, and alertness in biosensors and effort storage.

The e-book starts off with a quick evaluate of the background of graphene and a dialogue of its very important homes. It then provides the various equipment of graphene synthesis to be had and a quick assessment of some very important characterization suggestions that distinguishes graphene from its allotropes. The authors element the purposes of graphene in high-speed electronics, field-effect transistors, biosensors, gas-sensors, ultra-capacitors, photonics, optoelectronics, and drug supply. They finish with assurance of the toxicity houses of graphene and the way forward for graphene research.

Written via specialists with greater than a decade of expertise in nanotechnology examine, the publication contains the most recent literature and findings within the box. Its emphasis on functions, particularly biomedical/electrochemical and effort garage functions, units it except different books in this subject. It presents these operating in graphene and comparable fabrics a source that is helping start up new thinking.

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S. Lee, G. Bozoklu, W. T. S. Ruoff, Graphene oxide papers modified by divalent ions-enhancing mechanical properties via chemical cross-linking, ACS Nano 2, 572–578 (2008). S. A. B. M. J. A. D. T. Nguyen, R. Ruoff, Graphene-based composite materials, Nature 442, 282–286 (2006). T. A. Abdala, S. A. D. H. C. S. T. A. K. C. Brinson, Functionalized graphene sheets for polymer nanocomposites, Nat. Nanotechnol. 3, 327–331 (2008). P. D. R. J. Booth, D. A. V. F. K. S. Novoselov, Graphene-based liquid crystal device, Nano Lett.

Z. M. J. C. M. Kikkawa, Photoluminescence and band gap modulation in graphene oxide, Appl. Phys. Lett. 94, 111909 (2009). R. Sheats, H. Antoniadis, M. Hueschen, W. Leonard, J. Miller, R. , Organic electroluminescent devices, Science 273, 884–888 (1996). J. J. Lovinger, Status of and prospects for organic electroluminescence, J. Mater. Res. 11, 3174–3187 (1996). G. -Y. Lin, C. Mattevi, H. A. S. , Blue photoluminescence from chemically derived graphene oxide, Adv. Mater. 22, 505–509 (2010). T.

Graphene Synthesis ◾ 19 Guo et al. [66] employed GO obtained by the Hummers method [20] as the starting material, which consisted of numerous oxygen-bearing groups bonded onto the surface of GO. These oxygen-containing moieties increased the charged capacity, thereby increasing the dispersion of GO in water. Following this, electrochemical reduction of the exfoliated GO was performed on a graphite working electrode at different cathodic potential in a GO dispersion with constant magnetic stirring.

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Graphene-Based Materials: Science and Technology by Subbiah Alwarappan


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