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Hydrogen Materials Science and Chemistry of Carbon Nanomaterials

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Cover of 'Hydrogen Materials Science and Chemistry of Carbon Nanomaterials'

Table of Contents

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    Book Overview
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    Chapter 1 Phase Transformations in Carbon Materials
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    Chapter 2 Hydrogen Solubility in FCC Fullerite
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    Chapter 3 Controlling Role of Electron Concentration in Plasma-Chemical Synthesis
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    Chapter 4 Oxygen Source for Isolated Fuel Cells
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    Chapter 5 Microscopic Characteristics of H Diffusion and Diffuse Scattering of Radiations in H.C.P.- Ln -H (from the Data on Electrical-Resistivity Relaxation)
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    Chapter 6 Investigation of Content of Endometallofullerenes Extracts
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    Chapter 7 An Overview of Hydrogen Storage Methods
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    Chapter 8 Alumo- and Borohydrides of Metals: History, Properties, Technology, Application
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    Chapter 9 Structural-Phase Transformations in Titanium-Fullerene Films at Implantation of Boron Ions
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    Chapter 10 Field Emission Investigation of Carbon Nanotubes Doped by Different Metals
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    Chapter 11 Development of Methods of Deposition of Discontinuous Nickel Coatings on Powders of AB 5 Type Alloys
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    Chapter 12 XRD Patterns of Cathode Deposits Formed in Electric Arc Sputtering Zr-Me-Graphite Electrodes
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    Chapter 13 Metal Hydride Accumulators of Hydrogen on the Basis of Alloys of Magnesium and Rare-Earth Metals with Nickel
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    Chapter 14 Synthesis of Nanotubes in the Liquid Phase
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    Chapter 15 Mossbauer Study of Carbon Nanostructures Obtained on Fe-Ni Catalyst
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    Chapter 16 Determination of an Optimum Performance of a PEM Fuel Cell Based on its Limiting Current Density
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    Chapter 17 Photoinduced Modifications of the Structure and Microhardness of Fullerite C 60
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    Chapter 18 Investigations on the Carbon Special Form Graphitic Nanofibres as a Hydrogen Storage Materials
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    Chapter 19 Heterometallic Fullerides of Transition Metals with the Composition K 2 MC 60
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    Chapter 20 Characterization of Nanoparticles Processed by Arc — Discharge between Carbon Electrodes Containing Ni 2 Y Catalyst
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    Chapter 21 Protection of Securities by the Application of Fullerenes
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    Chapter 22 Spectrophotometric Analysis of C 60 and C 70 Fullerences in the Toluene Solutions
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    Chapter 23 Effect of the Nature of the Reactor Wall Material on Morphology and Structure of Products Resulted from Arc Graphite Sputtering
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    Chapter 24 Study of Thermodynamic Parameters of Hydrogen Gas by Grapho-Analytic Method
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    Chapter 25 Simulation of Operation Heat or Cold-Making Unit with Hydride Heat Pump
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    Chapter 26 Quantum-Chemical Investigations of Single Wall Carbon Nanotube Hydrogenation Processes
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    Chapter 27 Quantum Chemical Investigations of the Growth Models of Single Wall Carbon Nanotubes on Polyhen Rings, Fullerenes and Diamond Surface
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    Chapter 28 Covalent-Binding Carbon Nanotube: Simulation of Formation Mechanisms and Energy Characteristics
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    Chapter 29 To the Theory of Formation in Cast Iron of Spherical Graphite
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    Chapter 30 Modeling of Dehydration and Dehydrogenation in Pure and Ba-, Ca-, Sr- or Y-Modified Zirconia Nanolayer
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    Chapter 31 Metallcontaining Nanoparticles in Carbochain Polymeric Matrixes
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    Chapter 32 X-Ray Structural Study of Deposit Formed on Electric Arc Sputtering of Me 1 -Me 2 -C Composites
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    Chapter 33 Effect of Hydrogen on Delayed Fracture of HCP ε-Steels Based on Fe-Mn Solid Solution
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    Chapter 34 System Combined Automobile Feed on Carbon Nanostructures with Hydrogen Adsorbate Application
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    Chapter 35 T-Nanoconstructions on the (0001)-Surface of Graphite Based on Carbon (6,6)-Nanotubes
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    Chapter 36 Three-Dimensional Polymerized Cubic Phase of Fullerenes C28
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    Chapter 37 Nanostructure and Electronic Spectra of Cu-C 60 Films
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    Chapter 38 Hydrogenated Amorphous Silicon Carbide Films as Perspective Tribological Coatings and Semiconductor Layers
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    Chapter 39 Vibrational Spectra and Molecular Structure of the Hydrofullerenes C 60 H 18 , C 60 D 18 , and C 60 H 36 as Studied by IR and Raman Spectroscopy and First-Princliple Calculations
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    Chapter 40 Hydrogen Segregation in the Residual Stresses Field
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    Chapter 41 Nanoparticles of Metals and Oxides on Surface of Carbon Fibers are Effective Catalysts of Chemical Transformations of Epoxy Oligomers
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    Chapter 42 Theory of Transport Phenomena on Plasma — Metal Hydryde Interface
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    Chapter 43 The Ultradisperse Formations of Free Carbon in Alloys of Iron
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    Chapter 44 Simulation of Fullerene Irradiation and Fragmentation by Particle Beams
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    Chapter 45 Lithium in Nanoporous Carbon Materials Produced from SiC
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    Chapter 46 Scientific-Technical Prerequisites in Ukraine for Development of the Wind-Hydrogen Plants
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    Chapter 47 Synthesis and Structural Peculiarities of the Exfoliated Graphite Modified by Carbon Nanostructures
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    Chapter 48 Modelling of TDS-Spectra of Dehydrating
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    Chapter 49 Some Schematics of Use of Hydride Devices in the Automobile
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    Chapter 50 Electronic-Microscopic Investigation of Nanoscale Products of Catalytic Pyrolysis of Toluene
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    Chapter 51 Application of the Metal Hydride Activation Effect of Hydrogen Isotopes for Plasmal Chemical Technologies
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    Chapter 52 Vibrational Spectra of C 60 Polymers: Experiment and First-Principle Assignment
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    Chapter 53 Feasibility of Hydrogen Energy Production Through Natural Gas Steam Reformation Process in the UAE
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    Chapter 54 Isotope Effects in the Qquasielastic Mössbauer Absorption of 57 Fe in NbH 0.78 and NbD 0.76
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    Chapter 55 Electrical Resistance of Binary Ordered Alloys with HCP Structure in the Presence of Impurity Atoms or Thermal Vacancies
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    Chapter 56 Hydriding Properties of Magnesium-Salt Mechanical Alloys
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    Chapter 57 Hydrogen Sorption and Electrochemical Properties of Intermetallic Compounds La 2 Ni 7 and La 2 Ni 6 Co
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    Chapter 58 Hydride Phases in Sm 2 Fe 17 -NH 3 System
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    Chapter 59 Optical Investigation of Hydrogen Intercalation-Deinteracalation Processes in Layered Semiconductorγ-InSe Crystals
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    Chapter 60 Quantum Topology and Computer Simulation of Confined Hydrogen Atom Inside Spherical-Form Gap
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    Chapter 61 Calorimetric Investigation of the Hydrogen Interaction with Ti 0.9 Zr 0.1 Mn 1.3 V 0.5
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    Chapter 62 Interaction in NbVCo-H 2 and NbVFe-H 2 Systems under Hydrogen Pressure up to 2000 ATM
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    Chapter 63 Effect of Hydrogenation on Spin-Reorientation Phase Transitions in R 2 Fe 14 BH X (R = Y, Ho, Er) Compounds
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    Chapter 64 The Cluster Growth Mechanism of Nanostructured Diamond
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    Chapter 65 Specific Features in Thermal Expansion of YFe 11−X Co X TiH Single Crystals
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    Chapter 66 Study of Structure, Hydrogen Absorption and Electrochemical Properties of Ti 0.5 Zr 0.5 Ni y V 0.5 Mn x Substoichiometric Laves Phase Alloys
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    Chapter 67 Effect of Stress on Accumulation of Hydrogen and Microstructure of Silcon co-Implanted with Hydrogen and Helium
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    Chapter 68 Hydrogen Storage Materials and their Maximum Ability on Reversible Hydrogen Sorption
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    Chapter 69 The Study of Changes of Physical — Mechanical Properties of Materials in a Condensed State under Hydrogen Influence Using Fault Detection Acoustic Microscopy Methods
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    Chapter 70 Diffusion of Hydrogen in Amorphous, High Deformed and Nanocrystalline Alloys
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    Chapter 71 Diffusion of Hydrogen in Binary and Ternary Disordered Alloys
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Title
Hydrogen Materials Science and Chemistry of Carbon Nanomaterials
Published by
Springer Netherlands, April 2006
DOI 10.1007/1-4020-2669-2
ISBNs
978-1-4020-2668-3, 978-1-4020-2669-0
Editors

Veziroglu, T. Nejat, Zaginaichenko, Svetlana, Schur, Dmitry V., Baranowski, B., Shpak, Anatoliy P., Skorokhod, Valeriy V.