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Original Articles

High-resolution transmission electron microscopy study of a cross-linked fullerene-related multilayer graphitic material

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Pages 1155-1166 | Received 20 Jun 1997, Accepted 21 Jul 1998, Published online: 12 Aug 2009

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PeterJ. F. Harris. (2005) New Perspectives on the Structure of Graphitic Carbons. Critical Reviews in Solid State and Materials Sciences 30:4, pages 235-253.
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Articles from other publishers (6)

Ranran Song, Bin Cao, Di Zhang & Huaihe Song. (2016) A simple preparation of porous graphene nanosheets containing onion-like nano-holes with favorable high-rate Li-storage performance. RSC Advances 6:68, pages 63373-63377.
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Marek Wiśniewski & Piotr A. Gauden. (2009) The HSAB principle as a means to interpret the reactivity of carbon nanotubes. Applied Surface Science 255:9, pages 4782-4786.
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Artur P Terzyk, Sylwester Furmaniak, Piotr A Gauden, Peter J F Harris, Jerzy Włoch & Piotr Kowalczyk. (2007) Hyper-parallel tempering Monte Carlo simulations of Ar adsorption in new models of microporous non-graphitizing activated carbon: effect of microporosity. Journal of Physics: Condensed Matter 19:40, pages 406208.
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Artur P. Terzyk, Sylwester Furmaniak, Peter J. F. Harris, Piotr A. Gauden, Jerzy Włoch, Piotr Kowalczyk & Gerhard Rychlicki. (2007) How realistic is the pore size distribution calculated from adsorption isotherms if activated carbon is composed of fullerene-like fragments?. Physical Chemistry Chemical Physics 9:44, pages 5919.
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Timothy C. PetersenIan K. SnookIrene YarovskyDougal G. McCullochBrendan O'Malley. (2006) Curved-Surface Atomic Modeling of Nanoporous Carbon. The Journal of Physical Chemistry C 111:2, pages 802-812.
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I Alexandrou, C.J Kiely, A.J Papworth & G.A.J Amaratunga. (2004) Formation and subsequent inclusion of fullerene-like nanoparticles in nanocomposite carbon thin films. Carbon 42:8-9, pages 1651-1656.
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