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1.

図書

図書
S. Morita, R. Wiesendanger, E. Meyer (eds.)
出版情報: Berlin : Springer-Verlag, c2002-2015  2 v. ; 24 cm
シリーズ名: Nanoscience and technology
Physics and astronomy online library
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目次情報: 続きを見る
Introduction / Seizo Morita1:
AFM in Retrospective / 1.1:
Present Status of NC-AFM / 1.2:
Future Prospects for NC-AFM / 1.3:
References
Principle of NC-AFM / Franz J. Giessibl2:
Basics / 2.1:
Relation to the Scanning Tunneling Microscope (STM) / 2.1.1:
Atomic Force Microscope (AFM) / 2.1.2:
Operating Modes of AFMs / 2.1.3:
Scanning Speed, Signal Bandwidth and Noise / 2.1.4:
The Four Additional Challenges Faced by AFM / 2.2:
Jump-to-Contact and Other Instabilities / 2.2.1:
Contribution of Long-Range Forces / 2.2.2:
Noisein theImagingSignal / 2.2.3:
Non-MonotonicImaging Signal / 2.2.4:
Frequency-Modulation AFM (FM-AFM) / 2.3:
Experimental Setup / 2.3.1:
Applications / 2.3.2:
Relation between Frequency Shift and Forces / 2.4:
Generic Calculation / 2.4.1:
Frequency Shift for a Typical Tip-Sample Force / 2.4.2:
Calculation of the Tunneling Current for Oscillating Tips / 2.4.3:
Noise in Frequency-Modulation AFM / 2.5:
Noisein theFrequencyMeasurement / 2.5.1:
Optimal Amplitude for Minimal Vertical Noise / 2.5.3:
A Novel Force Sensor Based on a Quartz Tuning Fork / 2.6:
Quartz Versus Silicon as a Cantilever Material / 2.6.1:
Benefits in Clamping One of the Beams (qPlus Configuration) / 2.6.2:
Conclusion and Outlook / 2.7:
Semiconductor Surfaces / Yasuhiro Sugawara3:
Instrumentation / 3.1:
Three-Dimensional Mapping of Atomic Force / 3.2:
Control ofAtomic Force / 3.3:
Imaging Mechanisms for Si(100)2×1 and Si(100)2×1: H / 3.4:
Surface Strain on an Atomic Scale / 3.5:
Low Temperature Image of Si(100) Clean Surface / 3.6:
Mechanical Control ofAtomPosition / 3.7:
Atom Identification Using Covalent Bonding Force / 3.8:
Charge Imaging with Atomic Resolution / 3.9:
Mechanical Atom Manipulation / 3.10:
Bias Dependence of NC-AFM Images and TunnelingCurrent Variations on Semiconductor Surfaces / Toyoko Arai ; Masahiko Tomitori4:
Experimental Conditions / 4.1:
Bias Dependence of NC-AFM Images for Si(111)7×7 / 4.2:
MechanismofInvertedAtomicCorrugation / 4.2.1:
NC-AFM Imaging and Tunneling Current / 4.2.2:
NC-AFM Images for Ge/Si(111) / 4.3:
Concluding Remarks / 4.4:
Alkali Halides / Roland Bennewitz ; Martin Bammerlin ; Ernst Meyer5:
Experimental Techniques / 5.1:
Relevant Forces / 5.1.2:
Imaging of Single Crystals / 5.2:
Sample Preparation / 5.2.1:
Atomic Corrugation / 5.2.2:
Imaging of Defects / 5.2.3:
Mixed Alkali Halide Crystals / 5.2.4:
Imaging of Thin Films / 5.3:
Preparation of Thin Films / 5.3.1:
Atomic Resolutionat Low-Coordinated Sites / 5.3.2:
Radiation Damage / 5.4:
Metallization and Bubble Formation in CaF2 / 5.4.1:
Monatomic Pits in KBr / 5.4.2:
Dissipation Measurements / 5.5:
Material and Site-Specific Contrast / 5.5.1:
Using Damping for Distance Control / 5.5.2:
Atomic Resolution Imaging on Fluorides / Michael Reichling ; Clemens Barth6:
Tip Instabilities / 6.1:
Flat Surfaces / 6.3:
Step Edges / 6.4:
Atomically Resolved Imaging of a NiO(001) Surface / Hirotaka Hosoi ; Kazuhisa Sueoka ; Kazunobu Hayakawa ; Koichi Mukasa7:
Antiferromagnetic Nickel Oxide / 7.1:
ExperimentalConsiderations / 7.2:
Morphology ofthe Cleaved Surface / 7.3:
Atomically Resolved Imaging UsingNon-CoatedandFe-CoatedSiTips / 7.4:
Short-Range Magnetic Interaction / 7.5:
Analysis ofthe Cross-Section / 7.6:
Conclusion / 7.7:
Atomic Structure, Order and Disorder on High Temperature Reconstructed α-Al2O3(0001) / 8:
TheCleanSurface / 8.1:
Defect Formation upon Water Exposure / 8.2:
Self-Organized Formation of Nanoclusters / 8.3:
NC-AFM Imaging of Surface Reconstructions and Metal Growth on Oxides / Chi Lun Pang ; Geoff Thornton9:
1×1 to 1×3 Phase Transition of TiO2(100) / 9.1:
Surface Reconstructions of TiO2(110) / 9.3:
The 1×2 Reconstruction of SnO2(110) / 9.4:
Imaging Thin Film Alumina: NiAl(110)-Al2O3 / 9.5:
Growth of Cu and Pd on α-Al2O3(0001)- <$$> / 9.6:
A Short-Range-Ordered Overlayer of K on TiO2(110) / 9.7:
Conclusions / 9.8:
Atoms and Molecules on TiO2(110) and CeO2(111) Surfaces / Ken-ichi Fukui ; Yasuhiro Iwasawa10:
Background / 10.1:
Brief Description of Experiments / 10.2:
Surface Structures of TiO2(110) / 10.3:
Adsorbed Atoms and Molecules on TiO2(110) / 10.4:
Carboxylate Ions on TiO2(110) / 10.4.1:
Hydrogen Adatoms on TiO2(110) / 10.4.2:
Fluctuation ofAcetate Ions on TiO2(110) / 10.5:
Surface Structures of CeO2(111) / 10.6:
NC-AFM Imaging of Adsorbed Molecules / 10.7:
NucleicAcidBasesonaGraphiteSurface / 11.1:
Double-StrandedDNAonaMicaSurface / 11.2:
Alkanethiol on a Au(111) Surface / 11.3:
Organic Molecular Films / Hirofumi Yamada12:
AFM Imaging of Molecular Films / 12.1:
Fullerenes / 12.1.1:
AlkanethiolSAMs / 12.1.2:
Ferroelectric Molecular Films / 12.1.3:
Surface Potential Measurements / 12.2:
Technical Developments in NC-AFM Imaging ofMolecules / 12.3:
Single-Molecule Analysis / Akira Sasahara ; Hiroshi Onishi12.4:
Molecules and Surface / 13.1:
Experimental Methods / 13.3:
Alkyl-Substituted Carboxylates / 13.4:
Numerical Simulation ofPropiolate Topography / 13.5:
Sphere-Substrate Force / 13.5.1:
Sphere-Carboxylate Force / 13.5.2:
Cluster-Substrate Force / 13.5.3:
Cluster-Carboxylate Force / 13.5.4:
Simulated Topography / 13.5.5:
Fluorine-Substituted Acetates / 13.6:
Conclusions and Perspectives / 13.7:
Low-Temperature Measurements: Principles, Instrumentation, and Application / Wolf Allers ; Alexander Schwarz ; Udo D. Schwarz14:
Microscope Operation at Low Temperatures / 14.1:
Drift / 14.2.1:
Noise / 14.2.2:
Van der Waals Surfaces / 14.3:
HOPG(0001) / 14.4.1:
Xenon / 14.4.2:
Nickel Oxide / 14.5:
Semiconductors / 14.6:
Δf(z) Curves on Specific Atomic Sites / 14.6.1:
Tip-Dependent Atomic Scale Contrast / 14.6.2:
Tip-Induced Relaxation / 14.6.3:
Magnetic Force Microscopy at Low Temperatures / 14.7:
MFM Data Acquisition / 14.7.1:
Domain Structure of La0.7Ca0.3MnO3-δ / 14.7.2:
Vortices on YBa2Cu3O7-δ / 14.7.3:
Theory of Non-Contact Atomic Force Microscopy / Masaru Tsukada ; Naruo Sasaki ; Michel Gauthier ; Katsunori Tagami ; Satoshi Watanabe14.8:
Cantilever Dynamics / 15.1:
Theoretical Simulation of NC-AFM Images / 15.3:
Non-Contact Atomic Force Microscopy Images ofDynamic Surfaces / 15.4:
Effect of Tip on Image for the Si(100)2×1: H Surface / 15.5:
Effect of Tip on Surface Structure Change and its Relation to Dissipation / 15.6:
Chemical Interaction in NC-AFM on Semiconductor Surfaces / San-Huang Ke ; Tsuyoshi Uda ; Kiyoyuki Terakura ; Ruben Pérez ; Ivan Štich15.7:
First-Principles Calculation of Tip-Surface Chemical Interaction / 16.1:
Simulation of NC-AFM Images / 16.3:
Simulations on Various Surfaces / 16.4:
Tip-Induced Surface Relaxation on the GaAs(110) Surface / 16.5:
Vertical Scan Over an As Atom / 16.5.1:
Vertical Scan Over a Ga Atom / 16.5.2:
RelevancetoNear-Contact STM Observations / 16.5.3:
Tip-Induced Surface Atomic Processes and EnergyDissipation in NC-AFM / 16.5.4:
Image Contrast on GaAs(110) for a Pure Si Tip: Distance Dependence / 16.6:
Effect of Tip Morphology on NC-AFM Images / 16.7:
Image Contrast for the Ga/Si Tip / 16.7.1:
Image Contrast for the As/Si Tip / 16.7.2:
Contrast Mechanisms on InsulatingSurfaces / Adam Foster ; Alexander Shluger16.8:
Model ofAFM and Main Forces / 17.1:
Tip-Surface Setup / 17.2.1:
Forces / 17.2.2:
Simulating Scanning / 17.3:
TheSurface / 17.3.1:
TheTip / 17.3.2:
Tip-Surface Interaction / 17.3.3:
Modelling Oscillations / 17.3.4:
Generating a Theoretical Surface Image / 17.3.5:
The Calcium Fluoride (111) Surface / 17.4:
Calcite: Surface Deformations During Scanning / 17.4.2:
Studying Surface and Defect Properties / 17.5:
Analysis of Microscopy and Spectroscopy Experiments / Hendrik Hölscher17.6:
BasicPrinciples / 18.1:
Origin ofthe Frequency Shift / 18.2.1:
Calculation ofthe FrequencyShift / 18.2.3:
Frequency Shift for Conservative Tip-Sample Forces / 18.2.4:
Experimental NC-AFM Images of van der Waals Surfaces 355 / 18.3:
BasicPrinciplesoftheSimulationMethod / 18.3.2:
Applications ofthe Simulation Method / 18.3.3:
Dynamic Force Spectroscopy / 18.4:
Determining Forces fromFrequencies / 18.4.1:
Analysis ofTip-Sample Interaction Forces / 18.4.2:
Theory of Energy Dissipation into Surface Vibrations / Lev Kantorovich18.5:
Possible Dissipation Mechanisms / 19.1:
Adhesion Hysteresis / 19.2.1:
Stochastic Dissipation / 19.2.2:
Other Mechanisms / 19.2.3:
Brownian Particle MechanismofEnergy Dissipation / 19.3:
Brownian Particle / 19.3.1:
Fluctuation-Dissipation Theorem / 19.3.2:
Oscillating Tip as a Brownian Particle / 19.3.3:
Energy Dissipated Per Oscillation Cycle / 19.3.4:
Nonequilibrium Considerations for NC-AFM Systems / 19.4:
Preliminary Remarks / 19.4.1:
Mixed Quantum-Classical Representation / 19.4.2:
Equation ofMotion for the Tip / 19.4.3:
Estimation ofDissipation Energies in NC-AFM / 19.5:
Comparison with STM / 19.6:
Conclusions and Future Directions / 19.7:
Measurement of Dissipation Induced by Tip-Sample Interactions / H.J. Hug ; A. Baratoff20:
Experimental Aspects of Energy Dissipation / 20.1:
ExperimentalMethods / 20.3:
ApparentEnergyDissipation / 20.4:
Velocity-DependentDissipation / 20.5:
Electric-Field-MediatedJouleDissipation / 20.5.1:
Magnetic-Field-MediatedJouleDissipation / 20.5.2:
Magnetic-Field-MediatedDissipation / 20.5.3:
Brownian Dissipation / 20.5.4:
Hysteresis-Related Dissipation / 20.6:
Magnetic-Field-Induced Hysteresis / 20.6.1:
Hysteresis Due to Adhesion / 20.6.2:
Hysteresis Due to Atomic Instabilities / 20.6.3:
DissipationImagingwithAtomicResolution / 20.7:
DissipationSpectroscopy / 20.8:
Index / 20.9:
Introduction / Seizo Morita1:
AFM in Retrospective / 1.1:
Present Status of NC-AFM / 1.2:
2.

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図書
田中正雄まんが
出版情報: 東京 : 学習研究社, 2002.8  148p ; 23cm
シリーズ名: 日本の歴史 : 学研まんが ; 16
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新村秀一著
出版情報: 東京 : 丸善, 2002.9  x, 199p ; 21cm
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木村直巳脚本・作画
出版情報: 東京 : 宙出版, 2002.6  201p ; 20cm
シリーズ名: プロジェクトX挑戦者たち : コミック版 / NHKプロジェクトX制作班原作・監修
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朽津耕三著 ; 日本化学会編
出版情報: 東京 : 丸善, 2002.9  iv, 79p ; 21cm
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Yukio Kiho
出版情報: Osaka : Center for Academic Societies Japan, Osaka, [2002]  vi, 114 p. ; 31 cm
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清水宏著
出版情報: 東京 : 朝倉書店, 2002.9  ix, 128p ; 21cm
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レーザー技術総合研究所編
出版情報: 東京 : コロナ社, 2002.10  viii, 275p, 図版1枚 ; 22cm
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大浜庄司著
出版情報: 東京 : 東京電機大学出版局, 2002.9  xii, 254p ; 21cm
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竹久夢二著
出版情報: 東京 : 日本図書センター, 2002.12  169p ; 20cm
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島田紳助, 松本人志著
出版情報: 東京 : 幻冬舎, 2002.3  262p ; 20cm
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泉弘志著
出版情報: 東京 : 誠文堂新光社, 2002.3  166p, 図版 [4]p ; 21cm
シリーズ名: 入門エレクトロニクス ; 4
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夏目雄平, 小川建吾著
出版情報: 東京 : 朝倉書店, 2002-  冊 ; 21cm
シリーズ名: 基礎物理学シリーズ / 清水忠雄, 矢崎紘一, 塚田捷監修 ; 13-14
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矢島悦次郎 [ほか] 共著
出版情報: 東京 : 丸善, 2002.3  xii, 376p, 図版[1]枚 ; 21cm
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尾田十八, 坂本二郎共著
出版情報: 東京 : 培風館, 2002.5  iv, 160p ; 22cm
シリーズ名: 新世紀の工学シリーズ / 尾田十八, 三木光範共編 ; 1
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村上龍, 中田英寿著
出版情報: 東京 : 集英社, 2002.5  261p ; 20cm
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芝野耕司編著
出版情報: 東京 : 日本規格協会, 2002.5  xxxxiii, 879, 527p ; 22cm
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川端裕人著
出版情報: 東京 : 文藝春秋, 2002.5  396p ; 16cm
シリーズ名: 文春文庫 ; [か-28-1]
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図書
edited by Bhanu P. Jena, J.K. Heinrich Hörber
出版情報: San Diego ; Tokyo : Academic Press, c2002  xiv, 415 p., [22] p. of plates ; 24 cm
シリーズ名: Methods in cell biology / edited by David M. Prescott ; v. 68
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Contributors
Preface
Local Probe Techniques / J. K. Heinrich Horber1.:
Introduction / I.:
Scanning Tunneling Microscopy / II.:
Atomic Force Microscopy / III.:
Force Spectroscopy / IV.:
Photonic Force Microscopy / V.:
References
The Atomic Force Microscope in the Study of Membrane Fusion and Exocytosis / Bhanu P. Jena ; Sang-Joon Cho2.:
Methods
AFM Studies on Live Cells
Identification of New Plasma Membrane Structures Involved in Exocytosis
Future of AFM in the Study of Live Cells
Atomic Force Microscope Imaging of Cells and Membranes / Eric Lesniewska ; Pierre Emmanuel Milhiet ; Marie-Cecile Giocondi ; Christian Le Grimellec3.:
AFM Equipment
AFM Operating Modes
Requirements for the Imaging of Intact Cells
Imaging of Cells
Imaging of Isolated Membranes / VI.:
Conclusion and Perspectives / VII.:
Measuring the Elastic Properties of Living Cells by the Atomic Force Microscope / Manfred Radmacher4.:
Principles of Measurement
Application to Cells
Mechanics of Cellular Dynamics
Summary
Cell Adhesion Measured by Force Spectroscopy on Living Cells / Martin Benoit5.:
Instrumentation
Preparations of the Force Sensor for Measurements with Living Cells
Cell Culture
Final Remarks
Molecular Recognition Studies Using the Atomic Force Microscope / Peter Hinterdorfer6.:
Experimental Approach
Dynamic Force Spectroscopy
Recognition Imaging
The Biophysics of Sensory Cells of the Inner Ear Examined by Atomic Force Microscopy and Patch Clamp / Matthias G. Langer ; Assen Koitschev7.:
Morphology and Function of Cochlear Hair Cells
AFM Technology
Applications
Discussion
Outlook
Biotechnological Applications of Atomic Force Microscopy / Guillaume Charras ; Petri Lehenkari ; Mike Horton8.:
Analysis
Application Examples
Future Directions and Improvements
Cellular Membranes Studied by Photonic Force Microscopy / Arnd Pralle ; Ernst-Ludwig Florin9.:
Experimental Considerations
Methods for Biological Probe Microscopy in Aqueous Fluids / Johannes H. Kindt ; John C. Sitko ; Lia I. Pietrasanta ; Emin Oroudjev ; Nathan Becker ; Mario B. Viani ; Helen G. Hansma10.:
Substrates/Surfaces
Basic Methods for Atomic Force Microscopy in Aqueous Fluids
Molecular Force Probing
Advanced Fluid Handling
Conclusion
Supported Lipid Bilayers as Effective Substrates for Atomic Force Microscopy / Daniel M. Czajkowsky ; Zhifeng Shao11.:
Preparation of the Supported Bilayer Substrates
Examples of Applications
Cryo-Atomic Force Microscopy / Sitong Sheng12.:
Designs and Instrumentation
Applications in Structural Biology
Deep Etching as the Preferred Sample Preparation Method
New Directions
Conformations, Flexibility, and Interactions Observed on Individual Membrane Proteins by Atomic Force Microscopy / Daniel J. Muller ; Andreas Engel13.:
High-Resolution AFM Imaging
Identification of Membrane Proteins
Observing the Oligomerization of Membrane Proteins
Unraveling the Conformational Variability of Membrane Proteins
Comparing AFM Topographs to Atomic Models
Conformational Changes of Native Membrane Proteins
Observing the Assembly of Membrane Proteins / VIII.:
Detecting Intra- and Intermolecular Forces of Proteins / IX.:
Conclusions and Perspectives / X.:
Single-Molecule Force Measurements / Aileen Chen ; Vincent T. Moy14.:
Experimental Design
Forced Unfolding of Single Proteins / S. M. Altmann ; P.-F. Lenne15.:
The Biological System
Forced Unfolding
Models
Conclusions and Prospects
Appendices
Developments in Dynamic Force Microscopy and Spectroscopy / A. D. L. Humphris ; M. J. Miles16.:
Active Q Control
Application of Active Q-Control AFM
Transverse Dynamic Force Techniques
Conclusions
Scanning Force Microscopy Studies on the Structure and Dynamics of Single DNA Molecules / Giampaolo Zuccheri ; Bruno Samori17.:
The Control of Adsorption of DNA on Surfaces
Air Imaging of DNA: Which Present, Which Future?
Imaging DNA in Fluid
DNA Manipulation with the SFM: The Controlled Dissection of DNA
The Study of DNA Conformations and Mechanics: Curvature and Flexibility
An Interesting Issue: The Shape of Supercoiled DNA
Index
Volumes in Series
Contributors
Preface
Local Probe Techniques / J. K. Heinrich Horber1.:
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Rod Smith
出版情報: Harlow : Pearson Education, 2002  15 p. ; 20 cm
シリーズ名: Penguin readers ; Easystarts
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ステッドマン医学大辞典編集委員会編[訳]
出版情報: 東京 : メジカルビュー社, 2002.2  202, 1980, 87, 412p, 図版16枚 ; 22cm
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緒方喜子, 中京テレビニュースプラス1取材班著
出版情報: 東京 : 丸善, 2002.1  viii, 260p ; 20cm
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櫻井英樹監修
出版情報: 東京 : シーエムシー出版, 2002.1  viii, 327p ; 21cm
シリーズ名: CMCテクニカルライブラリー ; 106
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図書
volume editor: M. Jansen ; with contributions by F. Aldinger ... [et al.]
出版情報: Berlin : Springer, c2002  2 v. ; 25 cm
シリーズ名: Structure and bonding ; 101-102
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Boron Nitrides--Properties, Synthesis and Applications / R. Haubner ; M. Wilhelm ; R. Weissenbacher ; B. Lux
Silicon Nitride Ceramics / G. Petzow ; M. Herrmann
Author Index Volumes 101-102
Subject Index
Phase Equilibria in the Si-B-C-N System / H.J. Seifert ; F. Aldinger
Silicon Carbide--A Survey of Synthetic Approaches, Properties and Applications / G. Roewer ; U. Herzog ; K. Trommer ; E. Muller ; S. Fruhauf
Amorphous Multinary Ceramics in the Si-B-N-C System / M. Jansen ; B. Jaschke ; T. Jaschke
Author Index Volume 101
Boron Nitrides--Properties, Synthesis and Applications / R. Haubner ; M. Wilhelm ; R. Weissenbacher ; B. Lux
Silicon Nitride Ceramics / G. Petzow ; M. Herrmann
Author Index Volumes 101-102
25.

図書

図書
Michael Wilson ... [et al.]
出版情報: Boca Raton : Chapman & Hall/CRC, 2002  xvii, 271 p., [8] p. of plates ; 24 cm
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Authors
Preface
Acknowledgment
Background to nanotechnology / 1:
Scientific revolutions / 1.1:
Types of nanotechnology and nanomachines / 1.2:
The periodic table / 1.3:
Atomic structure / 1.4:
Molecules and phases / 1.5:
Energy / 1.6:
Molecular and atomic size / 1.7:
Surfaces and dimensional space / 1.8:
Top down and bottom up / 1.9:
Exercises / 1.10:
References / 1.11:
Molecular nanotechnology / 2:
Atoms by inference / 2.1:
Electron microscopes / 2.2:
Scanning electron microscope / 2.3:
Modern transmission electron microscope / 2.4:
Scanning probe microscopy--atomic force microscope / 2.5:
Scanning tunnelling microscope / 2.6:
Nanomanipulator / 2.7:
Nanotweezers / 2.8:
Atom manipulation / 2.9:
Nanodots / 2.10:
Self assembly / 2.11:
Dip pen nanolithography / 2.12:
Nanopowders and nanomaterials / 2.13:
What are nanomaterials? / 3.1:
Preparation / 3.2:
Plasma arcing / 3.3:
Chemical vapour deposition / 3.4:
Sol-gels / 3.5:
Silica gels
Hydrolysis
Condensation and polymerisation of monomers to form particles
Zirconia and yttrium gels
Aluminosilicate gels
Forming nanostructured surfaces using the sol-gel process
Trapping by sol-gels
Electrodeposition / 3.6:
Ball milling / 3.7:
Using natural nanoparticles / 3.8:
Applications of nanomaterials / 3.9:
Insulation materials
Machine tools
Phosphors
Batteries
High power magnets
Motor vehicles and aircraft
Medical implants
Other medical uses
The carbon age / 3.10:
New forms of carbon / 4.1:
Types of nanotubes / 4.2:
Formation of nanotubes / 4.3:
Methods and reactants
Arcing in the presence of cobalt
Laser methods
Chemical vapour deposition method
Other methods
Assemblies / 4.4:
Purification of carbon nanotubes / 4.5:
The properties of nanotubes / 4.6:
Conductivity
Strength and elasticity
Uses of nanotubes / 4.7:
Electronics
Hydrogen storage
Materials
Mechanical machines
Space elevators
Molecular mimics / 4.8:
Catenanes and rotaxanes / 5.1:
Molecular switches / 5.2:
The electron driven molecular shuttle switch / 5.3:
The pH driven molecular shuttle switch / 5.4:
The light driven molecular shuttle switch / 5.5:
Synthesis of rotaxanes and catenanes / 5.6:
Rotaxanes and molecular computers / 5.7:
Chemical rotors / 5.8:
Prodders / 5.9:
Flippers / 5.10:
Atom shuttles / 5.11:
Actuators / 5.12:
Contacts / 5.13:
Nanobiometrics / 5.14:
Introduction / 6.1:
Lipids as nano- bricks and mortar / 6.2:
Lipid structure
Self-organising supramolecular structures
Things to do with lipids--templates
Same but different: self-assembled monolayers / 6.3:
The bits that do things--proteins / 6.4:
Three-dimensional structures using a 20 amino acid alphabet
Nanoscale motors
Biological computing--a protein-based 3D optical memory based on bacteriorhodopsin
Ion channels as sensors
Structure is information--DNA / 6.5:
What is DNA?
Using DNA to build nano-cubes and hinges
DNA as smart glue
Wiring up the nanoworld: DNA as wire template
A biological nanotechnological future / 6.6:
Optics, photonics and solar energy / 6.7:
Properties of light and nanotechnology / 7.1:
Reflectance of light
Transmission of light
Polarisation
Radiation
Interaction of light and nanotechnology / 7.2:
Photon trapping and plasmons
Dielectric constant and polarisation
Refractive index
Nanoholes and photons / 7.3:
Imaging / 7.4:
New low cost energy efficient windows and solar absorbers based on nanoparticles / 7.5:
Nanometals
Nanotechnology and daylight
Solar cells, nanoparticles and nanostructures
Optically useful nanostructured polymers
Photonic crystals, surface wave guides and control of light paths / 7.6:
Nanoelectronics / 7.7:
What will nanoelectronics do for us? / 8.1:
The birth of electronics / 8.3:
Semiconductors
The invention of the transistor
Integrated circuits
The tools of micro- and nanofabrication / 8.4:
Optical lithography
Electron beam lithography
Atomic lithography
Molecular beam epitaxy
From classical to quantum physics / 8.5:
Quantum electronic devices / 8.6:
High electron mobility transistors
Quantum interference transistor
Single electron transistors
Quantum corrals in electronics
Carbon nanotube transistors
Molecular electronics
DNA-directed assembly and application in electronics
Quantum information and quantum computers / 8.7:
How is a quantum computer different to a classical computer?
How does a quantum computer work?
Writing to an idealised atomic-quantum computer
Read-out from an idealised atomic-quantum computer
Quantum computation
Decoherence--the enemy of quantum computation
The power of quantum computation
Power of a classical computer
Power of a quantum computer
Quantum algorithms
Shor's algorithm
Grover's algorithm
Experimental implementations of quantum computers / 8.8:
Future applications / 8.9:
Microelectromechanical systems / 9.1:
Robots--how small can they go? / 9.2:
Ageless materials / 9.3:
Invisible mending of atomic dislocations inside damaged materials / 9.4:
Nanomechanics and nanoelasticity / 9.5:
Nanoparticle coatings--special new effects / 9.6:
Nanoelectronic and magnetic devices and new computing systems / 9.7:
Optoelectronic devices / 9.8:
Light emitting diodes
Thermionic solar power
Environmental applications / 9.9:
Into the realms of imagination / 9.10:
Communication / 10.1:
Manufacturing / 10.3:
Active materials and swarms
Nanomedicine / 10.4:
Society and ethics / 10.5:
Religion and making everything from everything else / 10.6:
Thanks for all the fish / 10.7:
Index / 10.8:
Authors
Preface
Acknowledgment
26.

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図書
秋久俊博 [ほか] 著
出版情報: 東京 : 共立出版, 2002.11  vii, 264p ; 26cm
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27.

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桑村仁著
出版情報: 東京 : 共立出版, 2002.11  xi, 455p ; 22cm
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28.

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佐藤政光 [ほか] 著
出版情報: 東京 : 第三書房, 2002.10  iii, 119p ; 26cm
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29.

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安達三郎, 大貫繁雄共著
出版情報: 東京 : 森北出版, 2002.11  viii, 193p ; 22cm
シリーズ名: 基礎電気・電子工学シリーズ / 西巻正郎, 関口利男編集
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東工大
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東工大
目次DB
土戸哲明 [ほか] 著
出版情報: 東京 : 講談社, 2002.11  xi, 162p ; 21cm
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目次情報: 続きを見る
はじめに iii
序章 微生物制御とその用語 1
1章 微生物細胞のしくみ 5
   1.1 微生物の発見 6
   1.2 微生物の分類学的位置 7
   1.3 微生物の構造と機能 9
   1.3.1 細菌 9
   1.3.2 真菌 17
2章 微生物の生活 18
   2.1 生育相 18
   2.2 生育の環境因子 20
   2.2.1 栄養素 20
   2.2.2 温度 21
   2.2.3 pH 22
   2.2.4 酸素 24
   2.2.5 酸化還元電位 24
   2.2.6 水分活性 25
   2.2.7 圧力 26
   2.3 細胞の生態学的挙動
   2.3.1 運動 27
   2.3.2 細胞間相互作用 28
   2.3.3 表面付着 29
   2.3.4 バイオフィルム形成 30
3章 微生物の生き残り戦略 31
   3.1 特殊環境適応 31
   3.1.1 温度 31
   3.1.2 pH 31
   3.1.3 浸透圧と超高圧 32
   3.2 ストレス応答 32
   3.2.1 熱ストレス 33
   3.2.2 低温ストレス 35
   3.2.3 紫外線ストレス 35
   3.2.4 酸・アルカリストレス 36
   3.2.5 浸透圧ストレス 36
   3.2.6 活性酸素ストレス 37
   3.2.7 嫌気ストレス 39
   3.2.8 一般ストレス応答 39
   3.2.9 トレランスと交差保護 39
   3.3 損傷菌 40
   3.3.1 損傷菌の概念 40
   3.3.2 各ストレスによる損傷とその回復 40
   3.4 胞子形成 41
   3.5 培養不能生存菌と貧栄養細菌 42
   3.6 薬剤耐性化 42
4章 微生物制御法の原理と科学 44
   4.1 物理的方法 44
   4.1.1 温度制御 44
   4.1.2 機械的制御 48
   4.1.3 電気的制御 50
   4.1.4 磁場制御 52
   4.1.5 電磁波制御 53
   4.1.6 超高圧制御 55
   4.2 物理化学的方法 55
   4.2.1 水分制御 55
   4.2.2 酸素・酸化還元電位制御 57
   4.2.3 pH制御 58
   4.3 化学的方法 59
   4.3.1 化学薬剤による微生物制御 59
   4.3.2 化学薬剤の作用特性 62
   4.3.3 抗菌剤の作用機構 69
   4.4 生物学的方法 71
   4.5 微生物制御の数理 72
   4.5.1 微生物制御の対象 73
   4.5.2 外延量と内包量 73
   4.5.3 微生物制御の真の対象 74
   4.5.4 微生物の増殖速度の微分方程式表現 75
   4.5.5 増殖の停止 77
5章 微生物制御における測定・評価法 82
   5.1 抗菌剤の効力指標と評価原理 82
   5.2 試験菌の選定 83
   5.3 試験菌の前培養 83
   5.4 微生物制御の処理方法 84
   5.5 マトリクスの選定 85
   5.6 増菌法による制御効果の評価 85
   5.6.1 増殖阻害効果の測定 85
   5.6.2 平板法(集落計数法)による生存数測定 86
   5.6.3 増殖遅延時間の解析による生存率測定 86
   5.6.4 薬剤のMIC試験法(1)―寒天培地希釈法 87
   5.6.5 薬剤のMIC試験法(2)―液体培地希釈法 88
   5.6.6 薬剤のMBC試験法 88
   5.6.7 フェノール(石炭酸)係数 89
   5.7 非増菌法による制御効果の評価 89
   5.7.1 細胞成長の顕微計測法 89
   5.7.2 細胞膜の色素分子透過性を指標とする方法 90
   5.7.3 細胞膜の透過性と細胞内エステラーゼ活性を指標とする方法 91
   5.7.4 栄養基質取り込み活性を指標とする方法 91
   5.7.5 細胞の還元力を指標とする方法 92
   5.7.6 細胞の呼吸活性を指標とする方法 93
   5.7.7 ATP定量測定 93
   5.8 測定法のバリデーション 94
   5.9 無菌試験法と滅菌インジケーター 94
6章 微生物制御・管理のためのシステム 96
   6.1 食品における微生物制御 96
   6.2 適正製造基準 97
   6.3 医薬品の製造と医療用具におけるバリデーションと滅菌保証 97
   6.4 危害分析重要管理点システム 98
   6.5 予測微生物学 100
   6.5.1 予測微生物学の理論 101
   6.5.2 増殖と腐敗,保存中の生残,加熱処理における死滅の予測とコンピューターソフトウェア 106
   6.5.3 増殖と腐敗,保存中の生残,加熱処理における死滅の予測モデルの限界と効用 110
   6.6 微生物危害におけるリスクアセスメント 110
7章 殺菌,静菌,除菌,遮断の技術 112
   7.1 殺菌技術 112
   7.1.1 加熱殺菌技術 112
   7.1.2 電磁波殺菌技術 117
   7.1.3 薬剤殺菌技術 118
   7.1.4 超高圧殺菌技術 125
   7.2 静菌技術 125
   7.2.1 低温処理 125
   7.2.2 乾燥,濃縮,溶質添加 126
   7.2.3 酸性化 126
   7.2.4 雰囲気調節 126
   7.2.5 静菌剤添加 127
   7.3 除菌・遮断技術 128
   7.4 併用技術 128
8章 微生物の保存 130
   8.1 微生物株の入手 130
   8.2 保存用細胞の調製 133
   8.3 凍結保存法 133
   8.4 凍結乾燥法 134
   8.5 乾燥法 135
   8.6 微生物保存株の生存性の確認 135
   8.7 微生物の生存性以外の特性,活性の保存 135
9章 微生物培養における制御 137
   9.1 微生物による微生物増殖の制御 137
   9.2 微生物の増殖を制御する培養方法 140
   9.2.1 連続培養 140
   9.2.2 流加培養 144
10章 将来の展望 148
   10.1 微生物制御における基本的な問題点とその対策 148
   10.2 微生物制御の新しい概念 149
   10.3 微生物制御法とその周辺技術の開発の展望 151
参考書 153
索引 157
はじめに iii
序章 微生物制御とその用語 1
1章 微生物細胞のしくみ 5
31.

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佐藤多佳子著
出版情報: 東京 : 新潮社, 2002.10  333p ; 20cm
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日本地理学会 [編]
出版情報: 東京 : 日本地理学会 , 東京 : 古今書院 (発売), 2002.1-  冊 ; 26cm
巻次年月次: 75巻1号 (Jan. 2002)-
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雑誌
出版情報: Amsterdam : Elsevier, c2002-  v. ; 28 cm
巻次年月次: Vol. 1598, no. 1-2 (July 2002)-
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雑誌
JR East
出版情報: 東京 : 東日本旅客鉄道株式会社総合企画本部技術企画部, 2002.10-  冊 ; 30cm
巻次年月次: No. 01 (autumn 2002)-
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雑誌
International Society of Developmental Biologists
出版情報: Amsterdam : Elsevier, c2002-  v. ; 28 cm
巻次年月次: Vol. 2, issues 1/2 (Nov. 2002)-
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36.

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雑誌
Society for Biomaterials ; 日本バイオマテリアル学会 ; Australian Society for Biomaterials ; Korean Society for Biomaterials
出版情報: Hoboken, N.J. : John Wiley & Sons, c2002-  v. ; 28 cm
巻次年月次: Vol. 64A, no. 1 (Jan. 1, 2003)-
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Bradley Trevor Greive
出版情報: Kansas City : Andrews McMeel Pub., c2002  121 p. ; 16 cm
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Lane Smith
出版情報: New York : Viking, 2002  1 v. (unpaged) ; 28 cm
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drawings by Hilary Knight ; additional plumbing by Mart Crowley
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Claire A. Nivola
出版情報: New York : Frances Foster Books, 2002  1 v. (unpaged) ; 29 cm
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図書
出版情報: [出版地不明] : 写真用ゼラチン試験法合同審議会, 2002  CD-ROM1枚 ; 19cm
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Jude Deveraux
出版情報: New York : Pocket Books, c2002  469 p. ; 18 cm
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Steven Pressfield
出版情報: New York : Black Irish Enterteinment, c2002  165 p. ; 21 cm
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佐藤正午著
出版情報: 東京 : 光文社, 2002.10  360p ; 16cm
シリーズ名: 光文社文庫
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村上竜〔著〕
出版情報: 東京 : 幻冬舎, 2002.4  252p ; 16cm
シリーズ名: 幻冬舎文庫
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Paulo Coelho ; translated by Amanda Hopkinson and Nick Caistor
出版情報: London : HarperCollins, 2002  x, 201 p ; 20 cm.
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古川日出男〔著〕
出版情報: 東京 : 角川書店, 2002.1  541p ; 15cm
シリーズ名: 角川文庫
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視聴覚資料

AV
dans un film de Christian Jaque
出版情報: [Tokyo] : アイ・ヴィー・シー [distributor], 2002  1 videodisc (173min.) ; 12cm
シリーズ名: IVC best selection
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edited by Edward Sacher
出版情報: New York : Kluwer Academic/Plenum Publishers, 2002-  v.
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目次情報: 続きを見る
New Instrumentation
Surface Analysis Using Confocal Raman Micro-spectroscopy / C. Hyett ; D.-Q. Yang ; T.H. Ellis ; E. Sacher1.:
Ellipsometric Characterization of the Optical Constants of Metals: Thin Film versus Nanoparticle / D. Dalacu ; L. Martinu2.:
Ultra Thin Film Analysis Using the Thermo VG Scientifics Thetaprobe Instrument / R.K. Champaneria ; J. Wolstenholme3.:
Nanoindentation of Microsprings and Microcantilevers / M. Seto ; B. Dick ; M. Brett4.:
Low Permittivity Materials
Physical and Interfacial Properties of Low Permittivity Polymers: Cyclotene, SiLK and Ultra-Low K / D. Frye ; J.J. Waeterloos ; M. Simmonds ; T. Stokich ; J. Im5.:
Mechanical Properties of Cured Silk Low-K Dielectric Films / P.H. Townsend ; J. Curphy ; C. Karas ; E.O. Shaffer II6.:
Plasma-Polymerized Fluoropolymer Thin Films for Microelectronic Applications / M. Silverstein ; R. Chen ; L. Sandrin7.:
Polymer Metallization
Fundamental Aspects of Polymer Metallization / F. Faupel ; V. Zaporojtchenko ; T. Strunskus ; J. Erichsen ; K. Dolgner ; A. Thran ; M. Keine8.:
The Study of Copper Clusters on Dow Cyclotene and Their Stability / 9.:
Adsorption of Noble Metal Atoms on Polymers / J. Zekonyte10.:
Nucleation and Growth of Vapor-Deposited Metal Films on Self-Assembled Monolayers Studied by Multiple Characterization Probes / A.V. Walker ; G.L. Fisher ; A.E. Hooper ; T. Tighe ; R. Opila ; N. Winograd ; D.L. Allara11.:
Barrier Layers
Morphological Investigations of Low-k Polymer/Diffusion Barrier Interfaces for IC Metallization / S. Sankaran ; R.E. Geer12.:
Chemistry in the Initial Formation of Nitride Barriers on Low-K Dielectrics / P. Abramowitz ; J. Liu ; P.S. Ho13.:
Capabilities and Limitations of RBS to Characterize Hyper-Thin Silicon Compound on Various Polymeric Substrates / G. Dennler ; A. Houdayer ; P. Raynaud ; Y. Segui ; M.R. Wertheimer14.:
Adhesion Enhancement
Surface Modifications by Ion-Assisted Reactions / S.K. Koh ; J.S. Cho ; S. Han ; K.H. Kim ; Y.W. Beag15.:
Plasma and VUV Pretreatments of Polymer Surfaces for Adhesion Enhancement of Electrolessly Deposited Ni or Cu Films / M. Romand ; M. Charbonnier ; Y. Goepfert16.:
Index
New Instrumentation
Surface Analysis Using Confocal Raman Micro-spectroscopy / C. Hyett ; D.-Q. Yang ; T.H. Ellis ; E. Sacher1.:
Ellipsometric Characterization of the Optical Constants of Metals: Thin Film versus Nanoparticle / D. Dalacu ; L. Martinu2.:
50.

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Harper Lee
出版情報: New York : HarperCollins, 2002, c1960  323 p. ; 21 cm
シリーズ名: Harper Perennial modern classics
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