Hydrogen Materials Science and Chemistry of Carbon Nanomaterials: Proceedings of the NATO Advanced Research Workshop on Hydrogen Materials Science an Chemistry ... II: Mathematics, Physics and Chemistry) 🔍
Z. A. Matysina, D. V. Schur (auth.), T. Nejat Veziroglu, Svetlana Yu. Zaginaichenko, Dmitry V. Schur, B. Baranowski, Anatoliy P. Shpak, Valeriy V. Skorokhod (eds.) Springer Netherlands, NATO Science Series II: Mathematics, Physics and Chemistry, NATO Science Series II: Mathematics, Physics and Chemistry 172, 1, 2005
英语 [en] · PDF · 33.5MB · 2005 · 📘 非小说类图书 · 🚀/duxiu/lgli/lgrs/nexusstc/scihub/zlib · Save
描述
The 2003 International Conference "Hydrogen Materials Science and Chemistry of Carbon Nanomaterials" was held in September 2003. In the tradition of the earlier ICHMS conferences, this meeting served as an interdisciplinary forum for the presentation and discussion of the most recent research on transition to hydrogen-based energy systems, technologies for hydrogen production, storage, utilization, materials, energy and environmental problems. The aim of the volume is to provide an overview of the latest scientific results on research and development in the different topics cited above. The representatives from industry, public laboratories, universities and governmental agencies have presented the most recent advances in hydrogen concepts, processes and systems, to evaluate current progress in these areas of investigations and to identify promising research directions for the future.
备用文件名
lgrsnf/A:\compressed\10.1007%2F1-4020-2669-2.pdf
备用文件名
nexusstc/Hydrogen Materials Science and Chemistry of Carbon Nanomaterials/c5ad6f926a5f47cea82f83afcf6706a2.pdf
备用文件名
scihub/10.1007/1-4020-2669-2.pdf
备用文件名
zlib/Medicine/Z. A. Matysina, D. V. Schur (auth.), T. Nejat Veziroglu, Svetlana Yu. Zaginaichenko, Dmitry V. Schur, B. Baranowski, Anatoliy P. Shpak, Valeriy V. Skorokhod (eds.)/Hydrogen Materials Science and Chemistry of Carbon Nanomaterials_2095395.pdf
备选标题
Hydrogen Materials Science and Chemistry of Carbon Nanomaterials: Proceedings of the NATO Advanced Research Workshop on Hydrogen Materials Science an ... II: Mathematics, Physics and Chemistry, 172)
备选标题
Hydrogen Materials Science and Chemistry of Carbon Nanomaterials: Proceedings of the NATO Advanced Research Workshop on Hydrogen Materials Science an Chemistry ... Physics and Chemistry Book 172)
备选标题
Proceedings of the NATO Advanced Research Workshop on Hydrogen Materials Science an Chemistry of Carbon Nanomaterials, Sudak, Crimea, Ukraine, September 14-20, 2003
备选作者
T. Nejat Veziroglu; Svetlana Ju Zaginajcenko; Dmitry V Schur; B Baranowski; Anatoliy Shpak; Valeriy V Skorokhod; NATO Advanced Research Workshop on Hydrogen Materials Science and Chemistry of Carbon Nanomaterials
备选作者
NATO Advanced Research Workshop on Hydrogen Materials Science and Chemistry of Carbon Nanomaterials (8th 2003 Sudak, Ukraine)
备选作者
Veziroglu, T. Nejat; Zaginaichenko, Svetlana Yu.; Schur, Dmitry V.; Baranowski, B.; Shpak, Anatoliy P.; Skorokhod, Valeriy V.
备选作者
T.NEJAT VEZIROGLU SVETLANA YU.ZAGINAICHENKO DMITRY V.SCHUR B.BARANOWSKI ANATOLIY P.SHPAK AND VALERIY V.SKOROKHOD
备选作者
Turhan Nejat Veziroğlu; Svetlana Zaginaichenko; Dmitry V Schur; B Baranowski; Anatoliy P Shpak; Valeriy V Skorokhod
备选作者
T Nejat Veziroğlu; North Atlantic Treaty Organization. Scientific Affairs Division
备选作者
Hartmut Ehrig; Karsten Ehrig; Ulrike Prange; Gabriele Taentzer
备选作者
edited by T. Nejat Veziroğlu ... [et al.]
备用出版商
Springer Science + Business Media, Inc
备用出版商
KLUWER ACADEMIC PUBLISHERS
备用版本
NATO science seriesSeries II, Mathematics, physics and chemistry, 172, Dordrecht, 2005
备用版本
NATO science series., v. 172, Dordrecht, Boston, London, Netherlands, 2004
备用版本
NATO Science Series II: Mathematics, Physics and Chemistry, 2006
备用版本
NATO science series, vol. 172, Dordrecht, 2004
备用版本
United States, United States of America
备用版本
1 edition, December 22, 2004
备用版本
2004, 2006
备用版本
2003
元数据中的注释
sm37143575
元数据中的注释
{"container_title":"NATO Science Series II: Mathematics, Physics and Chemistry","edition":"1","isbns":["1402026684","1402026692","9781402026683","9781402026690"],"issns":["1568-2609"],"last_page":660,"publisher":"Springer Netherlands","series":"NATO Science Series II: Mathematics, Physics and Chemistry 172"}
元数据中的注释
Includes bibliographical references and index.
Published in association with NATO Scientific Affairs Division.
备用描述
Phase Transformations in Carbon Materials....Pages 1-24
Hydrogen Solubility in FCC Fullerite....Pages 25-44
Controlling Role of Electron Concentration in Plasma-Chemical Synthesis....Pages 45-51
Oxygen Source for Isolated Fuel Cells....Pages 53-58
Microscopic Characteristics of H Diffusion and Diffuse Scattering of Radiations in H.C.P.- Ln -H (from the Data on Electrical-Resistivity Relaxation)....Pages 59-66
Investigation of Content of Endometallofullerenes Extracts....Pages 67-74
An Overview of Hydrogen Storage Methods....Pages 75-104
Alumo- and Borohydrides of Metals: History, Properties, Technology, Application....Pages 105-114
Structural-Phase Transformations in Titanium-Fullerene Films at Implantation of Boron Ions....Pages 115-122
Field Emission Investigation of Carbon Nanotubes Doped by Different Metals....Pages 123-130
Development of Methods of Deposition of Discontinuous Nickel Coatings on Powders of AB 5 Type Alloys....Pages 131-136
XRD Patterns of Cathode Deposits Formed in Electric Arc Sputtering Zr-Me-Graphite Electrodes....Pages 137-142
Metal Hydride Accumulators of Hydrogen on the Basis of Alloys of Magnesium and Rare-Earth Metals with Nickel....Pages 143-146
Synthesis of Nanotubes in the Liquid Phase....Pages 147-151
Mossbauer Study of Carbon Nanostructures Obtained on Fe-Ni Catalyst....Pages 153-158
Determination of an Optimum Performance of a PEM Fuel Cell Based on its Limiting Current Density....Pages 159-166
Photoinduced Modifications of the Structure and Microhardness of Fullerite C 60 ....Pages 167-176
Investigations on the Carbon Special Form Graphitic Nanofibres as a Hydrogen Storage Materials....Pages 177-184
Heterometallic Fullerides of Transition Metals with the Composition K 2 MC 60 ....Pages 185-192
Characterization of Nanoparticles Processed by Arc — Discharge between Carbon Electrodes Containing Ni 2 Y Catalyst....Pages 193-202
Protection of Securities by the Application of Fullerenes....Pages 203-206
Spectrophotometric Analysis of C 60 and C 70 Fullerences in the Toluene Solutions....Pages 207-216
Effect of the Nature of the Reactor Wall Material on Morphology and Structure of Products Resulted from Arc Graphite Sputtering....Pages 217-223
Study of Thermodynamic Parameters of Hydrogen Gas by Grapho-Analytic Method....Pages 225-232
Simulation of Operation Heat or Cold-Making Unit with Hydride Heat Pump....Pages 233-242
Quantum-Chemical Investigations of Single Wall Carbon Nanotube Hydrogenation Processes....Pages 243-258
Quantum Chemical Investigations of the Growth Models of Single Wall Carbon Nanotubes on Polyhen Rings, Fullerenes and Diamond Surface....Pages 259-278
Covalent-Binding Carbon Nanotube: Simulation of Formation Mechanisms and Energy Characteristics....Pages 279-282
To the Theory of Formation in Cast Iron of Spherical Graphite....Pages 283-290
Modeling of Dehydration and Dehydrogenation in Pure and Ba-, Ca-, Sr- or Y-Modified Zirconia Nanolayer....Pages 291-298
Metallcontaining Nanoparticles in Carbochain Polymeric Matrixes....Pages 299-306
X-Ray Structural Study of Deposit Formed on Electric Arc Sputtering of Me 1 -Me 2 -C Composites....Pages 307-312
Effect of Hydrogen on Delayed Fracture of HCP ε-Steels Based on Fe-Mn Solid Solution....Pages 313-318
System Combined Automobile Feed on Carbon Nanostructures with Hydrogen Adsorbate Application....Pages 319-323
T-Nanoconstructions on the (0001)-Surface of Graphite Based on Carbon (6,6)-Nanotubes....Pages 325-328
Three-Dimensional Polymerized Cubic Phase of Fullerenes C28....Pages 329-332
Nanostructure and Electronic Spectra of Cu-C 60 Films....Pages 333-338
Hydrogenated Amorphous Silicon Carbide Films as Perspective Tribological Coatings and Semiconductor Layers....Pages 339-346
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....Pages 347-356
Hydrogen Segregation in the Residual Stresses Field....Pages 357-362
Nanoparticles of Metals and Oxides on Surface of Carbon Fibers are Effective Catalysts of Chemical Transformations of Epoxy Oligomers....Pages 363-374
Theory of Transport Phenomena on Plasma — Metal Hydryde Interface....Pages 375-382
The Ultradisperse Formations of Free Carbon in Alloys of Iron....Pages 383-386
Simulation of Fullerene Irradiation and Fragmentation by Particle Beams....Pages 387-390
Lithium in Nanoporous Carbon Materials Produced from SiC....Pages 391-398
Scientific-Technical Prerequisites in Ukraine for Development of the Wind-Hydrogen Plants....Pages 399-404
Synthesis and Structural Peculiarities of the Exfoliated Graphite Modified by Carbon Nanostructures....Pages 405-414
Modelling of TDS-Spectra of Dehydrating....Pages 415-426
Some Schematics of Use of Hydride Devices in the Automobile....Pages 427-435
Electronic-Microscopic Investigation of Nanoscale Products of Catalytic Pyrolysis of Toluene....Pages 437-446
Application of the Metal Hydride Activation Effect of Hydrogen Isotopes for Plasmal Chemical Technologies....Pages 447-455
Vibrational Spectra of C 60 Polymers: Experiment and First-Principle Assignment....Pages 457-466
Feasibility of Hydrogen Energy Production Through Natural Gas Steam Reformation Process in the UAE....Pages 467-472
Isotope Effects in the Qquasielastic Mössbauer Absorption of 57 Fe in NbH 0.78 and NbD 0.76 ....Pages 473-480
Electrical Resistance of Binary Ordered Alloys with HCP Structure in the Presence of Impurity Atoms or Thermal Vacancies....Pages 481-488
Hydriding Properties of Magnesium-Salt Mechanical Alloys....Pages 489-502
Hydrogen Sorption and Electrochemical Properties of Intermetallic Compounds La 2 Ni 7 and La 2 Ni 6 Co....Pages 503-510
Hydride Phases in Sm 2 Fe 17 -NH 3 System....Pages 511-518
Optical Investigation of Hydrogen Intercalation-Deinteracalation Processes in Layered Semiconductorγ-InSe Crystals....Pages 519-530
Quantum Topology and Computer Simulation of Confined Hydrogen Atom Inside Spherical-Form Gap....Pages 531-538
Calorimetric Investigation of the Hydrogen Interaction with Ti 0.9 Zr 0.1 Mn 1.3 V 0.5 ....Pages 539-546
Interaction in NbVCo-H 2 and NbVFe-H 2 Systems under Hydrogen Pressure up to 2000 ATM....Pages 547-552
Effect of Hydrogenation on Spin-Reorientation Phase Transitions in R 2 Fe 14 BH X (R = Y, Ho, Er) Compounds....Pages 553-556
The Cluster Growth Mechanism of Nanostructured Diamond....Pages 557-562
Specific Features in Thermal Expansion of YFe 11−X Co X TiH Single Crystals....Pages 563-568
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....Pages 569-577
Effect of Stress on Accumulation of Hydrogen and Microstructure of Silcon co-Implanted with Hydrogen and Helium....Pages 579-592
Hydrogen Storage Materials and their Maximum Ability on Reversible Hydrogen Sorption....Pages 593-601
The Study of Changes of Physical — Mechanical Properties of Materials in a Condensed State under Hydrogen Influence Using Fault Detection Acoustic Microscopy Methods....Pages 603-615
Diffusion of Hydrogen in Amorphous, High Deformed and Nanocrystalline Alloys....Pages 617-634
Diffusion of Hydrogen in Binary and Ternary Disordered Alloys....Pages 635-651
备用描述
<p><p>the Energy Arteries Of The Corporate Body Of Mankind Are Still Fed Mainly By Fossil Fuels; But They Are In Danger Of Running Dry Soon Unless New Energy Sources Are Made Available. One Of The Most Important As Well As The Most Ecologically Pure Power Source Is Hydrogen, That Constitutes The Heart Of Hydrogen Power Engineering And Considered As A Future Alternative To Fossil Power Sources. The Chemistry Of Carbon Nanomaterials And Hydrogen Materials Science Will Play An Important Role In Hastening The Conversion To The Hydrogen Energy System. In This Connection The Research And Application Of Materials Capable Of Interacting Actively With Hydrogen, Its Accumulating And Storing Will Be Of The Utmost Significance. This Is Of Particular Actuality For Creation Of Mobile Energy Sources Both For Mobile Telephones And For Hybrid Electric Cars That Are Developed By All Large Car Manufacturers Of The World. In This Connection The Hydrogen Capacity Of Carbon Nanostructural Materials, Such As Fullerenes, Nanotubes, Nanofibers And Other Nanostructures, Has Aroused A Special Interest Of Researchers. Hydriding Metals, Alloys, Nanocarbon And Composite Materials Can Store Hydrogen Safely At Relatively Low Pressures And Temperatures. Very Many Other Applications Are Also Possible &#8211; Such As Heating And Cooling, Waste Heat Storage, Pumping, Pressurizing, Heat-pumping, Hydrogen Purifying, Deuterium Separation, Electricity Production, Etc. As A Source Of &#8216;clean&#8217; Energy, Hydrogen Is Also Going To Be The Permanent Answer To Another Global Problem Caused By Utilization Of Fossil Fuels, Such As The Greenhouse Effect, Climate Change, Acid Rains, Ozone Layer Depletion, Pollution And Oil Spills.</p>
开源日期
2013-08-01
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