Introduction to nanoscale science and technology:
Gespeichert in:
Format: | Buch |
---|---|
Sprache: | English |
Veröffentlicht: |
Boston [u.a.]
Kluwer [u.a.]
2004
|
Schriftenreihe: | Nanostructure science and technology
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIII, 611 S. Ill., graph. Darst. 1 CD-ROM (12 cm) |
ISBN: | 1402077203 1402077572 1402077580 |
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650 | 4 | |a Nanotechnologie | |
650 | 7 | |a Nanotecnologia |2 larpcal | |
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650 | 4 | |a Nanostructured materials | |
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Datensatz im Suchindex
_version_ | 1804132821841739776 |
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adam_text | CONTENTS INTRODUCTION 1 I. NANOSCALE FABRICATION AND CHARACTERIZATION 5
1. NANOLITHOGRAPHY 7 L. R. HARRIOTT AND R. HULL 1.1. INTRODUCTION 7 1.2.
CROSS-CUTTING TECHNOLOGIES: RESISTS AND MASKS 9 1.3. PHOTON-BASED
NANOLITHOGRAPHY TECHNIQUES 13 1.4. ELECTRON BEAM LITHOGRAPHY 22 1.5.
FOCUSED ION BEAM LITHOGRAPHY 26 1.6. EMERGING NANOLITHOGRAPHIES 34 1.7.
SUMMARY 38 QUESTIONS 38 REFERENCES 39 2. SELF-ASSEMBLY AND
SELF-ORGANIZATION 41 ROY SHENHAR, TYLER B. NORSTEN, AND VINCENT M.
ROTELLO 2.1. THE ADVANTAGES OF SELF-ASSEMBLY 41 2.2. INTERMOLECUELAR
INTERACTIONS AND MOLECULAR RECOGNITION 42 2.3. SELF-ASSEMBLED MONOLAYERS
(SAMS) 44 2.4. ELECTROSTATIC SELF-ASSEMBLY 55 2.5. SELF-ORGANIZATION IN
BLOCK COPOLYMERS 63 2.6. SUMMARY 71 QUESTIONS 71 REFERENCES 72 3.
SCANNING PROBE MICROSCOPES 75 K.-W. NG 3.1. INTRODUCTION 75 3.2. BASICS
OF SPM 77 3.3. SCANNING TUNNELING MICROSCOPE 84 3.4. OTHER SCANNED PROBE
MICROSCOPES 91 3.5. NEAR-FIELD SCANNING OPTICAL MICROSCOPE (NSOM) 97
VIII CONTENTS 3.6. SUMMARY 99 QUESTIONS 100 REFERENCES 100 II.
NANOMATERIALS AND NANOSTRUCTURES 101 4. THE GEOMETRY OF NANOSCALE CARBON
103 VINCENT CRESPI 4.1. BONDING 103 4.2. DIMENSIONALITY 105 4.3.
TOPOLOGY 106 4.4. CURVATURE 109 4.5. ENERGETICS 109 4.6. KINETICS ILL
4.7. OTHER RINGS 113 4.8. SURFACES 114 4.9. HOLES (G * 0) 115 4.10.
CONCLUSIONS 116 QUESTIONS 117 REFERENCES 117 5. FULLERENES 119 HARRY C.
DORN AND JAMES C. DUCHAMP 5.1. FAMILIES OF FULLERENES: FROM CSSO TO TNTS
119 5.2. REACTIVITY 128 5.3. POTENTIAL APPLICATIONS 132 5.4. FURTHER
READING 133 QUESTIONS 134 REFERENCES 135 6. CARBON NANOTUBES 137 BRIAN
W. SMITH AND DAVID E. LUZZI 6.1. HISTORY 137 6.2. MOLECULAR AND
SUPRAMOLECULAR STRUCTURE 138 6.3. INTRINSIC PROPERTIES OF INDIVIDUAL
SINGLE WALL CARBON NANOTUBES 141 6.4. SYNTHESIS AND CHARACTERIZATION OF
CARBON NANOTUBES 152 6.5. MODIFICATION 166 6.6. APPLICATIONS OF
NANOTUBES 172 6.7. CONCLUSIONS 180 QUESTIONS 180 REFERENCES 181 7.
QUANTUM DOTS 183 A. B. DENISON, LOUISA J. HOPE-WEEKS, ROBERT W.
MEULENBERG, AND L. J. TERMINELLO 7.1. INTRODUCTION 183 IX 7.2. QUANTUM
MECHANICAL BACKGROUND 183 7.3. QUANTUM CONFINEMENT*3D QUANTUM DOT 185
7.4. OTHER INTERACTIONS 187 7.5. COLLOIDAL GROWTH OF NANOCRYSTALS 188
7.6. EPITAXIAL GROWTH 192 7.7. QUANTUM DOTS FORMED BY ION IMPLANTATION
194 7.8. FURTHER READING 198 QUESTIONS 198 REFERENCES 198 8.
NANOCOMPOSITES 199 ROBERT C. CAMMARATA 8.1. INTRODUCTION 199 8.2.
NANOLAYERED COMPOSITES 202 8.3. NANOFILAMENTARY AND NANOWIRE COMPOSITES
206 8.4. NANOPARTICULATE COMPOSITES 208 8.5. SUMMARY 211 REFERENCES 212
III. NANOSCALE AND MOLECULAR ELECTRONICS 215 9. ADVANCES IN
MICROELECTRONICS*FROM MICROSCALE TO NANOSCALE DEVICES 217 JAN VAN DER
SPIEGEL 9.1. INTRODUCTION 217 9.2. BRIEF HISTORY OF MICROLECTRONIC
DEVICES AND TECHNOLOGY 218 9.3. BASICS OF SEMICONDUCTORS 222 9.4.
STRUCTURE AND OPERATION OF A MOS TRANSISTOR 229 9.5. SCALING OF
TRANSISTOR DIMENSIONS 236 9.6. SMALL-DIMENSION EFFECTS 238 9.7.
NANOSCALE MOSFET TRANSISTORS: EXTENDING CLASSICAL CMOS TRANSISTORS 241
9.8. BEYOND TRADITIONAL CMOS 251 9.9. SUMMARY 254 QUESTIONS 255
APPENDICES 257 REFERENCES 258 10. MOLECULAR ELECTRONICS 261 MICHAEL
ZWOLAK AND MASSIMILIANO DI VENTRA 10.1. TOOLS AND WAYS TO BUILD AND
PROBE MOLECULAR DEVICES 262 10.2. CONDUCTANCE MEASUREMENTS 267 10.3.
TRANSPORT MECHANISMS AND CURRENT-INDUCED EFFECTS 275 10.4. INTEGRATION
STRATEGIES 279 10.5. CONCLUSIONS 280 10.6. FURTHER READING 281 QUESTIONS
281 REFERENCES 282 X CONTENTS 11. SINGLE ELECTRONICS 283 JIA GRACE LU
11.1. SINGLE ELECTRON TUNNELING 283 11.2. SUPERCONDUCTING SINGLE
ELECTRON TRANSISTOR 294 11.3. IMPLEMENTATION OF SINGLE ELECTRON
TRANSISTORS 299 11.4. APPLICATION OF SINGLE ELECTRON TRANSISTORS 300
11.5. SUMMARY 303 QUESTIONS 304 APPENDICES 304 REFERENCES 311 IV.
NANOTECHNOLOGY IN MAGNETIC SYSTEMS 313 12. SEMICONDUCTOR NANOSTRUCTURES
FOR QUANTUM COMPUTATION 315 MICHAEL E. FLATTE 12.1. NANOSTRUCTURES FOR
QUANTUM COMPUTATION 315 12.2. QUANTUM COMPUTATION ALGORITHMS 316 12.3.
SUPERPOSITION AND QUANTUM PARALLELISM 317 12.4. REQUIREMENTS FOR
PHYSICAL REALIZATIONS OF QUANTUM COMPUTERS 318 12.5. SPIN AS A PHYSICAL
REALIZATION OF A QUBIT 320 12.6. QUANTUM COMPUTATION WITH ELECTRON SPINS
IN QUANTUM DOTS 321 12.7. QUANTUM COMPUTATION WITH PHOSPHORUS NUCLEI IN
SILICON 322 12.8. CONCLUSIONS 324 QUESTIONS 325 REFERENCES 325 13.
MAGNETORESISTIVE MATERIALS AND DEVICES 327 OLLE HEINONEN 13.1.
INTRODUCTION 327 13.2. ELEMENTS OF MAGNETORESISTANCE 328 13.3. READ
HEADS AND MRAM 338 13.4. SUMMARY 351 QUESTIONS 352 REFERENCES 352 14.
ELEMENTS OF MAGNETIC STORAGE 355 JORDAN A. RATINE AND ROBERT E. FONTANA
JR. 14.1. INTRODUCTION TO MAGNETIC STORAGE 355 14.2. FUNDAMENTALS OF
MAGNETISM AND THEIR APPLICATION TO STORAGE 358 14.3. FABRICATION
TECHNOLOGIES AND SCALING 362 14.4. SUMMARY 369 QUESTIONS 369 REFERENCES
370 CONTENTS XI V. NANOTECHNOLOGY IN INTEGRATIVE SYSTEMS 371 15.
INTRODUCTION TO INTEGRATIVE SYSTEMS 373 MICHAEL GAITAN 15.1.
INTRODUCTION 373 15.2. REVIEW OF MEMS AND MST FABRICATION TECHNOLOGIES
376 15.3. INTEGRATION OF MICROMACHINING WITH MICROELECTRONICS 380 15.4.
OUTLOOK 385 QUESTIONS 387 REFERENCES 387 16. NANOELECTROMECHANICAL
SYSTEMS 389 STEPHANE EVOY, MARTIN DUEMLING, AND TUSHAR JARUHAR 16.1. OF
MEMS AND NEMS 389 16.2. SURFACE MACHINING AND CHARACTERIZATION OF NEMS
390 16.3. DYNAMICS OF NEMS 391 16.4. DISSIPATIVE PROCESSES IN NEMS 405
16.5. INTEGRATION OF NEMS WITH QUANTUM ELECTRONIC DEVICES 410 16.6.
BOTTOM-UP NEMS: CARBON NANOTUBE NANOMECHANICS 413 QUESTIONS 414
REFERENCES 414 17. MICROMECHANICAL SENSORS 417 P. G. DATSKOS, N. V.
LAVRIK, AND M. J. SEPANIAK 17.1. INTRODUCTION 417 17.2. MECHANICAL
MODELS 418 17.3. FABRICATION AND READOUT 425 17.4. PERFORMANCE OF
MICROMECHANICAL SENSORS 429 17.5. APPLICATIONS OF CANTILEVERS SENSORS
433 17.6. SUMMARY 437 QUESTIONS 437 REFERENCES 438 VI. NANOSCALE
OPTOELECTRONICS 441 18. QUANTUM-CONFINED OPTOELECTRONIC SYSTEMS 443
SIMON FAFARD 18.1. INTRODUCTION 443 18.2. SIZE AND SHAPE ENGINEERING OF
QUANTUM DOTS 445 18.3. OPTICAL PROPERTIES OF SELF-ASSEMBLED QUANTUM DOTS
448 18.4. ENERGY LEVEL ENGINEERING IN QUANTUM DOTS 454 18.5. SINGLE
QUANTUM DOT SPECTROSCOPY 458 18.6. QUANTUM DOT DEVICES 460 18.7. SITE
ENGINEERING OF QUANTUM DOT NANOSTRUCTURES 477 18.8. SUMMARY 477 XUE
CONTENTS QUESTIONS 478 REFERENCES 480 19. ORGANIC OPTOELECTRONIC
NANOSTRUCTURES 485 /. R. HEFLIN 19.1. INTRODUCTION 485 19.2. ORGANIC AND
POLYMERIC LIGHT-EMITTING DIODES 486 19.3. PHOTOVOLTAIC POLYMERS 491
19.4. SELF-ASSEMBLED ORGANIC NONLINEAR OPTICAL MATERIALS 497 19.5.
SUMMARY 502 QUESTIONS 503 REFERENCES 503 20. PHOTONIC CRYSTALS 505
YOUNAN XIA, KAORI KAMATA, AND YU LU 20.1. INTRODUCTION 505 20.2.
PHOTONIC BAND STRUCTURES AND BAND GAPS 506 20.3. PHOTONIC CRYSTALS BY
MICROFABRICATION 509 20.4. PHOTONIC CRYSTALS BY SELF-ASSEMBLY 513 20.5.
PHOTONIC CRYSTALS WITH TUNABLE PROPERTIES 523 20.6. SUMMARY 525
QUESTIONS 526 REFERENCES 526 VII. NANOBIOTECHNOLOGY 531 21. BIOMIMETIC
NANOSTRUCTURES 533 DENNIS E. DISCHER 21.1. INTRODUCTION: WATER, CELL
INSPIRATIONS, AND COPOLYMERS 533 21.2. WORM MICELLES AND VESICLES FROM
BLOCK COPOLYMERS 535 21.3. SOLVENT, SIZE, ENERGETICS, AND FLUIDITY 538
21.4. POLYMERSOMES FROM BLOCK COPOLYMERS IN AQUEOUS SOLUTION 539 21.5.
STIFFNESS AND STABILITY TUNING OF WORMS AND MEMBRANES 542 21.6. VESICLES
IN INDUSTRY 543 21.7. ADDITIONAL POLYMER INTERACTIONS AND OTHER HOLLOW
SHELLS 543 21.8. INTERFACING BIOLOGICAL STRUCTURES AND FUNCTIONS 544
21.9. SUMMARY 546 QUESTIONS 546 REFERENCES 547 22. BIOMOLECULAR MOTORS
549 JACOB SCHMIDT AND CARLO MONTEMAGNO 22.1. INTRODUCTION 549 22.2. OF
MEMS AND BIOMOLECULAR MOTORS 550 22.3. OPERATION AND FUNCTION OF MOTOR
PROTEINS 552 22.4. BIOTECHNOLOGY OF MOTOR PROTEINS 557 CONTENTS XUEI
22.5. SCIENCE AND ENGINEERING OF MOLECULAR MOTORS 561 22.6. ENABLING
MOLECULAR MOTORS IN TECHNOLOGICAL APPLICATIONS 568 22.7. CONCLUSION 571
FURTHER READING 572 QUESTIONS 572 REFERENCES 572 23. NANOFLUIDICS 575
JONGYOONHAN 23.1. INTRODUCTION 575 23.2. FLUIDS AT THE MICRO- AND
NANOMETER SCALE 577 23.3. FABRICATION OF NANOPOROUS AND NANOFLUIDIC
DEVICES 585 23.4. APPLICATIONS OF NANOFLUIDICS 588 23.5. SUMMARY 594
QUESTIONS 594 REFERENCES 595 INDEX 599
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id | DE-604.BV019378916 |
illustrated | Illustrated |
indexdate | 2024-07-09T19:58:55Z |
institution | BVB |
isbn | 1402077203 1402077572 1402077580 |
language | English |
lccn | 2003070222 |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-012842054 |
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physical | XIII, 611 S. Ill., graph. Darst. 1 CD-ROM (12 cm) |
publishDate | 2004 |
publishDateSearch | 2004 |
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publisher | Kluwer [u.a.] |
record_format | marc |
series2 | Nanostructure science and technology |
spelling | Introduction to nanoscale science and technology ed. by Massimiliano Di Ventra ... Boston [u.a.] Kluwer [u.a.] 2004 XIII, 611 S. Ill., graph. Darst. 1 CD-ROM (12 cm) txt rdacontent n rdamedia nc rdacarrier Nanostructure science and technology Materiales nanoestructurados Matériaux nanocristallins Moleculaire nanotechnologie gtt Nanoestructuras Nanostructuren gtt Nanostructures Nanotechnologie Nanotecnologia larpcal Nanotecnología Nanostructured materials Nanotechnology Nanostruktur (DE-588)4204530-7 gnd rswk-swf Nanotechnologie (DE-588)4327470-5 gnd rswk-swf Nanotechnologie (DE-588)4327470-5 s Nanostruktur (DE-588)4204530-7 s DE-604 Di Ventra, Massimiliano Sonstige (DE-588)139775382 oth GBV Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012842054&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Introduction to nanoscale science and technology Materiales nanoestructurados Matériaux nanocristallins Moleculaire nanotechnologie gtt Nanoestructuras Nanostructuren gtt Nanostructures Nanotechnologie Nanotecnologia larpcal Nanotecnología Nanostructured materials Nanotechnology Nanostruktur (DE-588)4204530-7 gnd Nanotechnologie (DE-588)4327470-5 gnd |
subject_GND | (DE-588)4204530-7 (DE-588)4327470-5 |
title | Introduction to nanoscale science and technology |
title_auth | Introduction to nanoscale science and technology |
title_exact_search | Introduction to nanoscale science and technology |
title_full | Introduction to nanoscale science and technology ed. by Massimiliano Di Ventra ... |
title_fullStr | Introduction to nanoscale science and technology ed. by Massimiliano Di Ventra ... |
title_full_unstemmed | Introduction to nanoscale science and technology ed. by Massimiliano Di Ventra ... |
title_short | Introduction to nanoscale science and technology |
title_sort | introduction to nanoscale science and technology |
topic | Materiales nanoestructurados Matériaux nanocristallins Moleculaire nanotechnologie gtt Nanoestructuras Nanostructuren gtt Nanostructures Nanotechnologie Nanotecnologia larpcal Nanotecnología Nanostructured materials Nanotechnology Nanostruktur (DE-588)4204530-7 gnd Nanotechnologie (DE-588)4327470-5 gnd |
topic_facet | Materiales nanoestructurados Matériaux nanocristallins Moleculaire nanotechnologie Nanoestructuras Nanostructuren Nanostructures Nanotechnologie Nanotecnologia Nanotecnología Nanostructured materials Nanotechnology Nanostruktur |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=012842054&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT diventramassimiliano introductiontonanoscalescienceandtechnology |