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Titlebook: Science and Application of Nanotubes; M. F. Thorpe (Series Editor),D. Tománek,R. J. Enbo Book 2002 Springer Science+Business Media New Yor

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Investigation of the Deformation of Carbon Nanotube Composites Through the Use of Raman Spectroscopyarea. The deformation micromechanics of single-walled carbon nanotube (SWNT) and multi-walled carbon nanotube (MWNT) particulate nanocomposites have been studied using Raman spectroscopy. SWNTs and MWNTs prepared by two different methods (pulsed-laser and arc-discharge) have been used as reinforceme
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Impulse Heating an Intercalated Compound Using a 27.12 MHz Atmospheric Inductively Coupled Argon Plaphite. Treated with FeCl. and reheated, open nanotubular and nanoencapsulated structures are identified by TEM. This opens an exciting area of research in that a variety of intercalated compounds could be tested as precursors and several metals (Ni, Co, etc.) could be examined in the heating stage.
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Direct Measurement of Binding Energy Via Adsorption of Methane on SWNTtubes used in this study were untreated; hence, they remain capped. Adsorption takes place preferentially in the interstitial channels between the individual SWNT strands which constitute nanotube bundles. The isosteric heat of adsorption for methane on the nanotubes has been obtained from the isoth
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Ph. Lambin,V. Meunier,A. Rubio entries. It is hoped that enough entries are now given to represent most structural groups and environments. Infrared spectroscopy as a tool for the identification of compounds can be used in conjunction with other methods, such as NMR and UV spectros­ copy, or alone to quickly establish the presen
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