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Titlebook: Carbon Nanotubes; Advanced Topics in t Ado Jorio,Gene Dresselhaus,Mildred S. Dresselhaus Book 2008 Springer-Verlag Berlin Heidelberg 2008 F

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New Techniques for Carbon-Nanotube Study and Characterization,irst,imaging and spectroscopy on the nanoscale is presented using near-field opticalmicroscopy. Secondly, phonon spectroscopy with atomic resolution is demonstratedbased on inelastic electron tunneling. Finally, coherent phonon generation byultrashort laser pulses is reviewed.
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Double-Wall Carbon Nanotubes,he possibility to study concentric intertube interactions with highprecision. Two complementary routes for the efficient growth of DWNTs arediscussed. Firstly, SWNTs filled with various carbon sources, such as fullerenes oracenes can form inner-shell tubes by a high-temperature treatment underclean-
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Doped Carbon Nanotubes: Synthesis, Characterization and Applications,ieving thiscontrol is by carrying out doping processes through which atoms and moleculesinteract (covalently or noncovalently) with the nanotube surfaces. The aim of thischapter is to emphasize the importance of different types of doping in carbonnanotubes (single-, double- and multiwall). There are
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Electrochemistry of Carbon Nanotubes,plications of nanotubes as electrode materials. Electrochemical chargingchanges the electronic structure. Consequently, electrochemistry and in-situspectroelectrochemistry provide versatile tools for the investigation of fundamentaleffects related to the electronic structure of carbon nanotubes. Thi
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High Magnetic Field Phenomena in Carbon Nanotubes,ransport experiments demonstrate the influence of quantum interference,disorder, and band-structure effects. Magneto-optical spectroscopy has been used toshow the effects of the Aharonov–Bohm phase on the band structure and on theexcitonic properties of carbon nanotubes.
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