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Quantum Chemistry Modeling of Formation of Graphene and Graphene Nanowalls for Emission Electronics

Quantum Chemistry Modeling of Formation of Graphene and Graphene Nanowalls for Emission Electronics
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出处 《Journal of Chemistry and Chemical Engineering》 2013年第5期383-389,共7页 化学与化工(英文版)
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  • 1Chuang, A. T. H.; Boskovic, B. O.; Robertson, J. Freestanding Carbon Nanowalls by Microwave Plasma-Enhanced Chemical Vapour Deposition. Diamond & RelatedMaterials 2006, 15, 1103-1106.
  • 2Rakov, E. G. Preparation of Thin Carbon Nanotubes by Catalytic Pyrolysis on a Support. Russ. Chem. Rev. 2007, 76(!), 1-22.
  • 3Alekseev, N. I. On the Morphology of Carbon Nanotubes Growing on a Nanoporous Substrate from Catalyst Particles. Physics of the Solid State 2006, 48(8), 616-623.
  • 4Alekseev, N. I.; Goncharov, V. D.; Charykov, N. A. The Mechanism of Unification of Carbon Nanotubes with Small Numbers of Walls into Bundles. Calculation of the Domains of Existence of Different Types of Nanotubes at Different Temperatures and Catalytic Particle Sizes. Russian Journal of Physical Chemistry A 2010, 84(5), 835-842.
  • 5Hyper Chem Computational Chemistry Hypercube, Inc. Publication HC50-00-03-00. 1996. http://www.chem.ac.ru/Chemistry/SoR/hyperchm.ru.html.
  • 6Obraztrsov, A. N.; Kleshch, V. V. Cold and Laser Stimulated Electron Emission from Nanocarbons. Journal of Nanoelectronics and Optoelectronics 2009, 4, 1-7.

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