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 | | | |  | | | Product Details
Format: Hardcover, 3264 pages
Publisher: Academic Press, Incorporated
ISBN: 0125129084
Release Date: Jan 10, 2001
| |  | | | In Brief Thin filmsvast in their variety and applications, and key to advances in the technology of electronic, photonic, and magnetic devicesare central to work involving materials science, solid- state physics, electrical and electronics engineering, spectroscopy, superconductivity, optical engineering, device engineering nanotechnology, and information technology. This five-volume reference summarizes advances of the last five decades and complements the Handbook of Thin Film Devices edited by M.H. Francombe (Academic Press, 2000), which covers applications; the two references together cover virtually every conceivable relevant topic. Sixty-five review chapters comprise the five volumes, which are devoted, respectively, to deposition and processing, characterization and spectroscopy, ferroelectric and dielectric, semiconductor and superconductor, and nanomaterials and magnetic thin films. Editor Nalwa is affiliated with Stanford Scientific Corporation and was formerly at Hitachi Research Laboratory in Japan. Book design and production are clear and clean, and the books lie flat when opened; but the bindings are glued instead of sewn, and it's possible that thin film of glue might wear out before the contents are obsolete. Annotation c. Book News, Inc., Portland, OR (booknews.com)
| | | | From The Publisher This five-volume handbook focuses on processing techniques, characterization methods, and physical properties of thin films (thin layers of insulating, conducting, or semiconductor material). The editor has composed five separate, thematic volumes on thin films of metals, semimetals, glasses, ceramics, alloys, organics, diamonds, graphites, porous materials, noncrystalline solids, supramolecules, polymers, copolymers, biopolymers, composites, blends, activated carbons, intermetallics, chalcogenides, dyes, pigments, nanostructured materials, biomaterials, inorganic/polymer composites, organoceramics, metallocenes, disordered systems, liquid crystals, quasicrystals, and layered structures.
Thin films is a field of the utmost importance in today's materials science, electrical engineering and applied solid state physics; with both research and industrial applications in microelectronics, computer manufacturing, and physical devices.
Advanced, high-performance computers, high-definition TV, digital camcorders, sensitive broadband imaging systems, flat-panel displays, robotic systems, and medical electronics and diagnostics are but a few examples of miniaturized device technologies that depend the utilization of thin film materials. The Handbook of Thin Films Materials is a comprehensive reference focusing on processing techniques, characterization methods, and physical properties of these thin film materials.
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 | | | | | Be the first to rate this book! Number of Reviews: 0 | | | |  | | | Accreditation Dr. H. S. Nalwa is the Managing Director of the Stanford Scientific Corporation, Los Angeles, California. He was Head of Department and R&D Manager at the Ciba Specialty Chemicals Corporation in Los Angeles (1999-2000) and a staff scientist at the Hitachi Research Laboratory, Hitachi Ltd., Japan (1990-1999). He has authored more than 150 scientific articles and 18 patents on electronic and photonic materials and devices. Dr. Nalwa serves on the editorial board of the Journal of Macromolecular Science-Physics, Applied Organometallic Chemistry (1993-1999), International Journal of Photoenergy, and Photonics Science News. He was the founder and Editor-in-Chief of the Journal of Porphyrins and Phthalocyanines published by John Wiley & Sons (1997-2000). Dr. Nalwa is a member of the American Chemical Society (ACS), American Physical Society (APS), Materials Research Society (MRS), Electrochemical Society (ECS), and the American Association for the Advancement of Science (AAAS). Dr. Nalwa has been cited in the Dictionary of International Biography, Who's Who in Science and Engineering, Who's Who in America, and Who's Who in the World.
| |  | | | Volume 1 Deposition and Processing 1 Methods of deposition of hydrogenated amorphous silicon for device applications 2 Atomic Layer Deposition 3 Laser Applications in Transparent Conducting Oxide Thin Film Processing 4 Cold Plasma Processing in Surface Science and Technology 5 Electrochemical Formation of Thin Films of Binary III-V Compounds 6 Nucleation, Growth and Crystallization of Thin Films 7 Ion Implant Doping and Isolation of GaN and Related Materials 8 Plasma Etching of GaN and Related Materials 9 Residual Stresses in Physically Vapor Deposited Thin Films 10 Langmuir-Blodgett Films of Biological Molecules 11 Structure Formation During Electrocrystallization of Metal Films 12 Epitaxial Thin Films of Intermetallic Compounds 13 Pulsed Laser Deposition of Thin Films: Expectations and Reality 14 b"-Alumina Single-Crystal Films 15 Quantum Well Interference in Double Quantum Wells Volume 2 Characterization and Spectroscopy 1 Classification of Cluster Morphologies 2 The Energy Gap of Clusters, Nanoparticles and Quantum Dots 3 Electronic States In GaAs-AlAs Short-period Superlattices: Energy Levels and Symmetry 4 Ion Beam Characterization in Superlattices 5 In-situ Real Time Spectroscopic Ellipsometry Studies: Carbon-based Materials and Metallic TiNx Thin Films Growth 6 In Situ Faraday-Modulated Fast-Nulling Single-Wavelength Ellipsometry of the Growth of Semiconductor, Dielectric and Metal Thin Films 7 Photocurrent Spectroscopy of Thin Passive Films 8 Low Frequency Noise Spectroscopy for Characterization of Polycrystalline Semiconducting Thin Films and Polysilicon Thin Film Transistors 9 Electron Energy Loss Spectroscopy for Surface Study 10 Theory of Low-energy Electron Diffraction and Photoelectron Spectroscopy from Ultra-thin Films 11 In situ Synchrotron Structural Studies of the Growth of Oxides and Metals 12 Operator Formalism in Polarization Nonlinear Optics and Spectroscopy of Polarization Inhomogeneous Media 13 Secondary Ion Mass Spectrometry (SIMS) and its Application to Thin Films Characterization 14 A Solid State Approach to Langmuir Monolayers, Their Phases, Phase Transitions and Design Volume 3 Ferroelectric and Dielectric Thin Films 1 Electrical Properties of High Dielectric Constant and Ferroelectric Thin Films for Very Large Scale Integration (VLSI) Integrated Circuits 2 High Permittivity (Ba, Sr)TiO3 Thin Films 3 Ultrathin Gate Dielectric Films for Si-Based Microelectronic Devices 4 Piezoelectric Thin Films: Processing and Properties 5 Fabrication and Characterization of Ferroelectric Oxide Thin Films 6 Ferroelectric Thin Films of Modified Lead Titanate 7 Point Defects in Thin Insulating Films of Lithium Fluoride for Optical Microsystems 8 High Temperature Superconductor and Ferroelectric Thin Films for Microwave Applications 9 Electro-Optical and Transport Properties of Quasi-two-dimensional Nanostrutured Materials Volume 4 Semiconductor and Superconducting Thin Films 1 Electrochemical Passivation of Si and SiGe Surfaces 2 Optical Properties of Highly Excited (Al, In) GaN Epilayers and Heterostructures 3 Electical Conduction Properties of Thin Films of Cadmium Compounds 4 Carbon Containing Heteroepitaxial Silicon and Silicon/Germanium Thin Films on Si(001) 5 Germanium Thin Films on Silicon for Detection of Near-infrared Light 6 Physical Properties of Amorphous Gallium Arsenide 7 Amorphous Carbon Thin Films 8 High-Tc Superconducting Thin Films 9 Electronic and Optical Properties of Strained Semiconductor Films of Group V and III-V Materials 10 Spin Waves in Thin Films, Multi-layers and Superlattices 11 Growth, Structure and Properties of Plasma-deposited Amorphous Hydrogenated Carbon-nitrogen Films 12 Conductive Metal Oxide Thin Films 13 Optical Properties of Dielectric and Semiconductor Thin Films Volume 5 Magnetic Thin Films 1 Thin Magnetic films 2 Magnetotransport effects in semiconductors 3 Thin films for High Density magnetic Recording 4 Magnetism of Nanoscale Composite Films 5 Nuclear Resonance in Magnetic Thin Films and Multilayers 6 Magnetic Characterisation of Superconducting Thin Films
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| | | | | | Keywords Thin films, Handbooks, manuals, etc, Thin Films Physics, Technology & Industrial Arts, Technology, Material Science, Solid State Physics, Engineering - Electrical & Electronic, Physics, Science, Electronics - Semiconductors, Thin films
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