書誌事項

Synthesis, properties, and applications of ultrananocrystalline diamond

edited by Dieter M. Gruen, Olga A. Shenderova, and Alexander Ya. Vul'

(NATO science series, Series II, Mathematics, physics, and chemistry ; v. 192)

Springer, c2005

  • : pbk.
  • : hbk.
  • : e-book

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注記

Includes bibliographical references and indexes

"Proceedings of the NATO Advanced Research Workshop on Synthesis, Properties and Applications of Ultrananocrystalline Diamond, St. Petersburg, Russia, 7-10 June 2004"--T.p. verso

内容説明・目次

巻冊次

: hbk. ISBN 9781402033209

内容説明

We are pleased to present the Proceedings of the NATO Advanced Research Workshop "Syntheses, Properties and Applications of Ultrananocrystalline Diamond" which was held June 7-10, 2004 in St. Petersburg, Russia. The main goal of the Workshop was to provide a forum for the intensive exchange of opinions between scientists from Russia and NATO countries in order to give additional impetus to the development of the science and applications of a new carbon nanostructure, called ultrananocrystalline diamond (UNCD) composed of 2-5 nm crystallites. There are two forms of UNCD, dispersed particles and films. The two communities of researchers working on these two forms of UNCD have hitherto lacked a common forum in which to explore areas of scientific and technological overlap. As a consequence, the two fields have up to now developed independently of each other. The time had clearly come to remedy this situation in order to be able to take full advantage of the enormous potential for societal benefits to be derived from exploiting the synergistic relationships between UNCD dispersed particulates and UNCD films. The NATO sponsored ARW therefore occurred in a very timely manner and was successful in beginning the desired dialogue, a precondition for making progress toward the above stated goal. The discovery of UNCD completes a triadof nanostructured carbonswhich includes fullerenes and nanotubes.

目次

  • Foreword. New Forms of Nanocarbon. Theory and Observation. 1. Carbon Family at the Nanoscale
  • O.A. Shenderova et al. 2. Structural and Electronic Properties of Isolated Nanodiamonds: a Theoretical Perspective
  • G. Galli and J.-Y. Raty. 3. From Nanodiamond to Nanowires
  • A. Barnard. 4. Quantum Chemical Studies of Growth Mechanisms of Ultrananocrystalline Diamond
  • L.A. Curtiss et al. 5. Nanodiamonds in the Cosmos
  • T.L. Daulton. 6. Diamond Molecules Found in Petroleum. New Members of the H-Terminated Diamond Series
  • R.M.K. Carison et al. II. Ultrananocrystalline Diamond Films. 7. Synthesis of Nanocrystalline Diamond Films in Ar/H2/CH4 Microwave Discharges
  • F. Benedic et al. 8. Modeling of ArIH2/CH4 Microwave Discharges used for Nanocrystalline Diamond Growth
  • F. Mohasseb et al. 9. Nanodiamond Seeding for Nucleation and Growth of CVD Diamond Films
  • V.Ralchenko et al. 10. Mechanism and Properties of Nanodiamond Films Deposited by the DC-GD-CVD Process
  • A. Hoffman. 11. Nanodiamond Injection into the Gas-Phase During CVD Diamond Film Growth
  • N.A. Feoktistov et al. 12. Stabilization of Diamond-Like Nanoclusters by Metallic Atoms and the Epitaxial Growth of Diamond Films: ab initio Simulation
  • V. Zavodinskii. III. Detonation nanodiamond. III.1 Formation of Detonation Nanodiamond. 13. The Formation Kinetics of Detonation Nanodiamonds
  • V.M. Titov et al. 14. Nanocarbon Phase Diagram and Conditions for Detonation Nanodiamond Formation
  • V.V. Danilenko. 15. Nanodiamond Graphitization and Properties of Onion-Like Carbon
  • V.L. Kuzentsov and Yu V. Butenko. III.2 Modification and Properties of Detonation Nanodiamond. 16. Physical and Chemical Problems of Modification of Detonation Nanodiamond Surface Properties
  • V.Yu. Dolmatov and T. Fujimura. 17. Disintegration and Purification of Crude Aggregates of Detonation Nanodiamond A Few Remarks on Nano Methodology
  • E. Osawa.18. Purification and Functionalization of Nanodiamonds
  • B. Spitsyn et al. 19. Interaction of CarbonAtoms with Nanodiamond Surface
  • A.P. Dementjev et al. 20. Physical and Chemical Properties of Modified Nanodiamonds
  • A.P. Puzyr et al.21. Magnetic Resonance Study of Nanodiamonds
  • A.I. Shames et al. 22. Infrared Spectra of Explosion Nanodiamonds: a Comparison with Spectra of Hydrogenated Amorphous Carbon Film
  • W.W. Duley et al. 23. Conversion of Elemental Substances and Inorganic Compounds to Carbon Nanostructures
  • V.G. Lutsenko. 24. The Fine and Fractal Structure and Protonic Conductivity of Silica Phosphate-Diamond Sol-Gel Nanocomposites
  • V.V. Shilov et al. III.3 Industrial Production of Detonation Nanodiamonds. 25. Facilities for Ultradisperse Diamond Production
  • T.M. Gubarevich and D.N. Gamanovich. 26. Ultradisperse Diamond Regeneration from Composite Electrolytes of Chromium Plating
  • T.M. Gubarevich et al. 27. Synthesis and Processing of Chelyabinsk Detonation Nanodiamonds
  • I.L. Petrov. 28. Conversion Raw Materials in Industrial Production of Ultradisperse Diamonds
  • T.M. Gubarevich and D.N. Gamanovich. 29. Ultradisperse Diamond Modifications in the Composite Gilding Process
  • T.M. Gubarevich and L.E. Chernukho. IV. Applications of Nanodiamond. 30. Applying CVD Diamond and Particulate Nanodiamond
  • J.L. Davidson, W.P. Kang. 31. Electronic Properties and Applications of Ultrananocrystalline Diamond
  • O.A. Williams et al. 32. Thermoelectric Effect in Field Electron Emission from Nanocarbon
  • A.Ya. Vul' et al. Authors Index. Subject Index. List of Workshop Participants.
巻冊次

: pbk. ISBN 9781402033216

内容説明

We are pleased to present the Proceedings of the NATO Advanced Research Workshop "Syntheses, Properties and Applications of Ultrananocrystalline Diamond" which was held June 7-10, 2004 in St. Petersburg, Russia. The main goal of the Workshop was to provide a forum for the intensive exchange of opinions between scientists from Russia and NATO countries in order to give additional impetus to the development of the science and applications of a new carbon nanostructure, called ultrananocrystalline diamond (UNCD) composed of 2-5 nm crystallites. There are two forms of UNCD, dispersed particles and films. The two communities of researchers working on these two forms of UNCD have hitherto lacked a common forum in which to explore areas of scientific and technological overlap. As a consequence, the two fields have up to now developed independently of each other. The time had clearly come to remedy this situation in order to be able to take full advantage of the enormous potential for societal benefits to be derived from exploiting the synergistic relationships between UNCD dispersed particulates and UNCD films. The NATO sponsored ARW therefore occurred in a very timely manner and was successful in beginning the desired dialogue, a precondition for making progress toward the above stated goal. The discovery of UNCD completes a triadof nanostructured carbonswhich includes fullerenes and nanotubes.

目次

  • Foreword. New Forms of Nanocarbon. Theory and Observation. 1. Carbon Family at the Nanoscale
  • O.A. Shenderova et al. 2. Structural and Electronic Properties of Isolated Nanodiamonds: a Theoretical Perspective
  • G. Galli and J.-Y. Raty. 3. From Nanodiamond to Nanowires
  • A. Barnard. 4. Quantum Chemical Studies of Growth Mechanisms of Ultrananocrystalline Diamond
  • L.A. Curtiss et al. 5. Nanodiamonds in the Cosmos
  • T.L. Daulton. 6. Diamond Molecules Found in Petroleum. New Members of the H-Terminated Diamond Series
  • R.M.K. Carison et al. II. Ultrananocrystalline Diamond Films. 7. Synthesis of Nanocrystalline Diamond Films in Ar/H2/CH4 Microwave Discharges
  • F. Benedic et al. 8. Modeling of ArIH2/CH4 Microwave Discharges used for Nanocrystalline Diamond Growth
  • F. Mohasseb et al. 9. Nanodiamond Seeding for Nucleation and Growth of CVD Diamond Films
  • V.Ralchenko et al. 10. Mechanism and Properties of Nanodiamond Films Deposited by the DC-GD-CVD Process
  • A. Hoffman. 11. Nanodiamond Injection into the Gas-Phase During CVD Diamond Film Growth
  • N.A. Feoktistov et al. 12. Stabilization of Diamond-Like Nanoclusters by Metallic Atoms and the Epitaxial Growth of Diamond Films: ab initio Simulation
  • V. Zavodinskii. III. Detonation nanodiamond. III.1 Formation of Detonation Nanodiamond. 13. The Formation Kinetics of Detonation Nanodiamonds
  • V.M. Titov et al. 14. Nanocarbon Phase Diagram and Conditions for Detonation Nanodiamond Formation
  • V.V. Danilenko. 15. Nanodiamond Graphitization and Properties of Onion-Like Carbon
  • V.L. Kuzentsov and Yu V. Butenko. III.2 Modification and Properties of Detonation Nanodiamond. 16. Physical and Chemical Problems of Modification of Detonation Nanodiamond Surface Properties
  • V.Yu. Dolmatov and T. Fujimura. 17. Disintegration and Purification of Crude Aggregates of Detonation Nanodiamond A Few Remarks on Nano Methodology
  • E. Osawa.18. Purification and Functionalization of Nanodiamonds
  • B. Spitsyn et al. 19. Interaction of CarbonAtoms with Nanodiamond Surface
  • A.P. Dementjev et al. 20. Physical and Chemical Properties of Modified Nanodiamonds
  • A.P. Puzyr et al.21. Magnetic Resonance Study of Nanodiamonds
  • A.I. Shames et al. 22. Infrared Spectra of Explosion Nanodiamonds: a Comparison with Spectra of Hydrogenated Amorphous Carbon Film
  • W.W. Duley et al. 23. Conversion of Elemental Substances and Inorganic Compounds to Carbon Nanostructures
  • V.G. Lutsenko. 24. The Fine and Fractal Structure and Protonic Conductivity of Silica Phosphate-Diamond Sol-Gel Nanocomposites
  • V.V. Shilov et al. III.3 Industrial Production of Detonation Nanodiamonds. 25. Facilities for Ultradisperse Diamond Production
  • T.M. Gubarevich and D.N. Gamanovich. 26. Ultradisperse Diamond Regeneration from Composite Electrolytes of Chromium Plating
  • T.M. Gubarevich et al. 27. Synthesis and Processing of Chelyabinsk Detonation Nanodiamonds
  • I.L. Petrov. 28. Conversion Raw Materials in Industrial Production of Ultradisperse Diamonds
  • T.M. Gubarevich and D.N. Gamanovich. 29. Ultradisperse Diamond Modifications in the Composite Gilding Process
  • T.M. Gubarevich and L.E. Chernukho. IV. Applications of Nanodiamond. 30. Applying CVD Diamond and Particulate Nanodiamond
  • J.L. Davidson, W.P. Kang. 31. Electronic Properties and Applications of Ultrananocrystalline Diamond
  • O.A. Williams et al. 32. Thermoelectric Effect in Field Electron Emission from Nanocarbon
  • A.Ya. Vul' et al. Authors Index. Subject Index. List of Workshop Participants.
巻冊次

: e-book ISBN 9781402033223

内容説明

Ultrananocrystalline diamond (UNCD) is one of the important members of the triad of nanostructured carbons, which includes fullerenes and nanotubes. UNCD with characteristic sizes of primary particles less than 10 nm occurs in two forms: as a dispersed powder made by detonation techniques and as a chemical vapor deposited film. This book for the first time combines results of research pursued by the two communities of scientists, which up to now, have been working rather independently and largely unaware of the vast synergistic relationships existing between them. It is particularly noteworthy that much of the Russian work on disperse UNCD is available here in English for the first time. The outstanding experts in the two fields are represented in this volume discussing the basic theoretical concepts underlying the synthesis and characterization of these nanomaterials and describing progress that has been made in several areas of applications such as nanocomposites, selective adsorbents, colloidal suspensions, microabrasives, lubricants, quantum dots, cold-cathodes for UNCD particles and MEMS, biosensors, electrochemical, and nerve prostheses, high temperature, highly rectifying diodes, FETOCOs, thermoelectrics for UNCD films. This Proceedings volume will be of interest to a wide audience of scientists and engineers and serve as an introduction to an important and rapidly evolving field of nanoscience and nanomaterials; as a text for a special topics graduate course; or as a starting point for those interested in the development of new approaches to problems that have hitherto defied solution for lack of suitable materials."

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