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Morkoc H. — Advanced semiconductor and organic nano-techniques
Morkoc H. — Advanced semiconductor and organic nano-techniques



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Название: Advanced semiconductor and organic nano-techniques

Автор: Morkoc H.

Аннотация:

Physical sciences and engineering, as well as biological sciences have recently made great strides in their respective fields. More importantly, the cross-fertilization of ideas, paradigms and methodologies have led to the unprecedented technological developments in areas such as information processing, full colour semiconductor displays, compact biosensors and controlled drug discovery to name a few. Top experts in their respective fields have come together to discuss the latest developments and the future of micro-nano electronics. They investigate issues to be faced in ultimate limits such as single electron transitors; zero dimensional systems for unique properties; thresholdless lasers, electronics based on inexpensive and flexible plastic chips; cell manipulation; biosensors; DNA based computers; quantum computing; DNA sequencing chips; micro fluidics; nanomotors based on molecules; molecular electronics and recently emerging wide bandgap semiconductors for emitters, detectors and power amplifiers. Contributions from top experts in this field Covers a wide range of topics


Язык: en

Рубрика: Технология/

Статус предметного указателя: Готов указатель с номерами страниц

ed2k: ed2k stats

Год издания: 2004

Количество страниц: 1506

Добавлена в каталог: 22.08.2014

Операции: Положить на полку | Скопировать ссылку для форума | Скопировать ID
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Предметный указатель
Atomic force microscopy (AFM), technique      448
Atomic force microscopy (AFM), thermo-indentation      190
Atomic force microscopy (AFM), tip arrays, thermomechanical data storage      214
Atomic wires      53
ATP      533
ATP, biological machines powered by      522
ATP, caged      523
ATP, caged, cargo transportation system      532
ATP, hydrolysis      521
AU      see also "Gold"
Au and A1 nanodots      198
Au, STM tip      198
Au, tip-pulsing experiments      198
Au-(1)-Au device, I(V) characteristics of      156 169
Au-2-Au device, I(V) characteristics of      162
Au-CN junction      181
Au-Isocyanide-Au Junctions      137—142
Au-lc-Au devices, I(V) characteristics of      157
Au-lc-Au devices, temperature dependence      160—167
Au-SAM-Au junction      147
Auger, electron spectroscopy      58
Auger, scattering      40
Autoclaving      287
Automatic lane adherence system      19
Avalanche photodiodes      182—185
Avidin, qualification of      410
Axons      84
AZT      361
Bacillus PS3      528
Backbonding      136
Bacteria and fungi, response to surface structure      303
Bacteria, artificial      524
Bacteria, genes, measurement of expression levels of      357
Balancing sense arrays      425
Ballistic transport      290
Ballistic transport, vs. drift-diffusion transport      260—261
Band, diagram of Schottky diode interface      164
Band, structure engineering approaches to p-contacts      355—357
Band, transport      196 201
Bandgap and conduction band discontinuities      99
Barium strontium titanate (BST)      226
Barium zirconate titanate (BZT)      226
Barium zirconium titanate (BZT) gate dielectric films      14
Basic charge transport mechanisms      48—54
Basic universal gate, schematic diagram showing structure      476
Becke — Perdew — Wang (BPW) functional      23
Bell, basis states      491
Bell, inequality      489
Bell, measurement      492
Benioff's machine      444
Bent nanotubes      153
Benzene, delocalized $\pi$ bonds of      47
Benzo[a]pyrene tetrol (BPT)      245
BiCMOS      132
BiCMOS process      431
Bilayer strips of PPy Au      127
Bio-MEMS      119
Biocompiler      396
Biofilms      303
Biolectronics      135
Biological "soup"      414
Biological application of microstructures      91—103
Biological computation      371
Biological motor systems, linear and rotary      528
Biological nanodevices, engineering energy sources for      533
Biological nanosensors      244—247
Biological/inorganic devices, integrated, applications      524—527
BioMEMS      410 414
Biomimetic receptors      234—235
Biomimetic surfaces      301
Biomimetics      3
Biomolecular and computer revolutions, combined pow er      75
Biomolecular motors      506
Biomotors and actuators      122—125
Bionanodevice design and synthesis      514—527
Bionics      84—90
Bionics, appendages      90
Bionics, connection with computer or neural net      90
Bionics, eye      88—89
Bioparticle manipulation      408 412—450
Bioreceptors, antibody      228—236
Bioreceptors, categories      226
Biorecognition elements      225
Biosensing      3
Biosensing, new techniques in      237
Biosensor      3 97
Biosensors      225
Biosensors, cell-based      253
Biosensors, conceptual illustration of operating principle of      226
Biosensors, principles of      226—236
Biosensors, two-tier classification scheme for      227
biotechnology      92
Biotechnology, applications of microelectronics and micromachining      4
Biotin-streptavidin linkage      117
Biotinylated probe oligonucleotide      352
Bipolar CMOS technology (BiCMOS)      26
Bipolar junction transistor (BJT)      4—5 148
Bipolar transistors      45 333
Bipolar transistors (BJTs)      132
Bipolaron states      50—51
Bir — Aronov — Pikus mechanism      479
Bis(3,5-dibromo-4-aminophenyl)methane      92
Bis(3,5-dibromophenyl)methane      92
Bis(3,5-diiodophenyl)methane      93
Bis(4-bromophenyl)methane      87
Bis(4-bromophenyl)methanol      86
Bis(4-diethyltriazenylphenyl)methane      88
Bis(4-iodophenyl)methane      89
Bis(4-thioacetylphenyl)methane      87
Bit, retention, as function of time and temperature      171
Bit, retention, time      174
Bit, strings      383
Bloch states      479
Blue and UV diode lasers, long-lived      361
Blue VCSEL device structure, possible, schematic      387
Blue/green light sources      345
Blue/violet, edge-emitting InGaN MQW diode lasers, central device science and optical engineering features      357
Blue/violet, InGaN diode laser design and performance of      358—368
Blue/violet, light emitters, advanced heterostructure      379—390
Bohr magneton      497
Boltzmann transport equation (BTE)      70
Bond, double      46
Bonding, $\pi$ bond      46
Boolean logic operations      64
Boolean variable gene product      398
Borromean rings      385
Boson mode density of photons or phonons      370
Bottom distribution Bragg reflector (DBR)      403
Bound electron, states of single InGaAs/GaAs QD      20
Bound electron, wavefunctions      21
Bovine serum albumin (BSA)      116
box      see "Buried oxide"
Bragg reflectors      52 see
Breakjunction      2 127
Breast cancer      134
Breast cancer research      358
Bridged quarter-thiophenes in solution      266
Brownian fluctuation      125
Buettiker probe, conventional      21
Buried oxide (BOX)      326 329
CAD-based analyses of microfluidic components      487
Cadherins      100 257
Caenorhabditis elegans      357
Cancer research      358—361
Candida albicans      304
Capacitance bottleneck      81
Capacitance-voltages curves      16
capacitors      149
Capillary electrophoresis (CE)      491
Capillary electrophoresis (CE), separation column model      491
Capped QDs      43
Capped QDs, MOCVD INGaAs/GaAs      5
Capped QDs, strained field in      8
Capture probes      365
Carbon monoxide      300
carbon nanotube      57—62 75 112
Carbon nanotube, concentrically nested      61
Carbon nanotube, electrical transport in      74
Carbon nanotube, inverter, one stage      61
Carbon nanotube, inverter, utilizing, transfer characteristic for      60
Carbon nanotubes      1
Carbon nanotubes for nanoelectronics applications      294
Carbon nanotubes, band structure of      296—398
Carbon nanotubes, based on mechanical devices      328—329
Carbon nanotubes, elastic modulus of      294
Carbon nanotubes, electronic properties of      295—299
Carbon nanotubes, mechanical memory      328—329
Carbon nanotubes, non-uniform electronic properties in      333
Carbon nanotubes, self-assembly      333
Carbon nanotubes, solubilization of      332
Carbon nanotubes, unique "size effect"      331
Cardiovascular system      104
Carrier mobilities      235
Carrier, concentration as function of temperature      71
Carrier, densities or velocities, fluctuations      150
Carrier, mobility      316
Carrier, relaxation in QD      40
Carrier, transport      222
Cassette mutagenesis      515
CB effects      17
CBT, techniques, absolute limits of      319
CBT, thermometry      319
CCD      242
CD      40
CD, player, schematic representations      40—41
cDNA      see "Complementary DNA"
Cell, adhesion      99
Cell, adhesion, patterns      99—100
Cell, cytoskeleton      99
Cell, migration, control and manipulation of      101—102
Cell, migration, process of      100
Cell-adhesion molecules (CAMs)      255 257
Cell-based biosensors      137
Cell-based microsystems      101
Cell-extracellular matrix (ECM) adhesion      257
Cell-substrate interactions      278
Cell-surface interactions      4
Cell-surface interface      255—257
Cell/cellular, as naturally occurring robot      372
Cell/cellular, attachment and migration on chemically patterned substrates      257
Cell/cellular, behavior on topographically modified surfaces      291
Cell/cellular, colonies growing from a single cell lineage      412
Cell/cellular, computation, artificial      400
Cell/cellular, culture, conventional      285
Cell/cellular, hacking      394—400
Cell/cellular, manipulations      407
Cell/cellular, manipulations, physical      412—415
Cell/cellular, manipulations, techniques, flow cytometry      415—421
Cell/cellular, morphology and network architecture      252
Cell/cellular, sorting, development of      416
Cell/cellular, structures/cells      233—234
Cell/cellular, substratum studies      292
Cell/cellular, systems      233—234
Cell/cellular, types, affected by applied electric field in vitro      333
Cell/cellular, types, studied on topographically patterned surfaces      276
Cells and sub-micrometer particles, positioning, moving, and sorting of      98—99
Cell—cell interactions      4
Central nervous system fiber tracts, damaged      342
Central processing unit (CPU), new generation of      5
Channel lengths      9
Channel, charge density      102
Channel, electron density      103—104
Channels in glass      497
Channels in polymers      497
Charge neutrality level (CNL)      30
Charge sharing effect (CSE)      351
Charge transfer excitons (CTE)      249 252—253
Charge transfer excitons (CTE), formation of      262
Charge transfer excitons (CTE), role in PL quenching      264
Charge transport across a metal-SAM-metal system      132
Charge transport due to tunneling between QDs      369
Charged species interactions      322—324
Charging energy-limited tunneling      51
Chemical and electrical bonds at molecular level      62
Chemical forces      93
Chemical nanosensors      241—244
Chemical patterning      252—253 257
Chemical patterning for cell culture      275
Chemical patterning, current and future directions of      274—275
Chemical patterning, direct lithography      260
Chemical patterning, indirect photolithography      265
Chemical stamping      87
Chemical vapor deposition (CVD)      300
Chemical vapor deposition (CVD), mobilities for SWNTs grown by      314
Chemical vapor deposition (CVD), nanotubes grown by      332
Chemical-mechanical polish (CMP)      164
Chemically assisted ion beam etching (CAIBE)      365
Chimeric DNA, mass-produced      512
chip dissipation      418
Cholera toxins, detection of      235
Chromatographic separations      495
Chromatography      332
Church — Turing thesis      443
Clade B HIV-1 pol virus      361
Classical and quantum complexity      449—452
Classical Boolean logic circuits      456
Classical complexity classes      449
Classical digital computing      442
Classical Turing machine      460
CMOS      see "Complementary metal oxide semiconductor" 132
CNS cells, morphological development of      85
Cochlear prosthesis      113
Coherent spin injection      481
Coherent spin injection from spin-polarized contacts      480—483
Collision avoidance radar system      19
Color of light      33
Color tuning      278
Combinatorial array synthesis      350
Commission International de l'Enclairage (CIE) standards      277
Compact displays      19
Compact power amplifiers      20
Complementary DNA (cDNA) chips      131
Complementary DNA (cDNA), chips      348
Complementary DNA (cDNA), microarrays      354
Complementary DNA (cDNA), microarrays, binding to gold surface      383
Complementary DNA (cDNA), microarrays, drug target validation      355
Complementary DNA (cDNA), microarrays, Format I      347
Complementary DNA (cDNA), microarrays, single-stranded (ssDNA)      348 391
Complementary DNA (cDNA), microarrays, use for gene expression and discovery      353—356
Complementary DNA (cDNA), microarrays, very large-scale      349
Complementary metal oxide semiconductor (CMOS)      56 107 211 361
Complementary metal oxide semiconductor (CMOS), approaches      83
Complementary metal oxide semiconductor (CMOS), basics      152 212—219
Complementary metal oxide semiconductor (CMOS), chip, standby power of      223
Complementary metal oxide semiconductor (CMOS), circuitry      1
Complementary metal oxide semiconductor (CMOS), circuits      5 13 332—333 429
Complementary metal oxide semiconductor (CMOS), compatibility      290
Complementary metal oxide semiconductor (CMOS), compatibility, crested barriers      285
Complementary metal oxide semiconductor (CMOS), device, dopant number fluctuations      228—229
Complementary metal oxide semiconductor (CMOS), device, fundamentals      152—157
Complementary metal oxide semiconductor (CMOS), device, lithography      220—221
Complementary metal oxide semiconductor (CMOS), device, miniaturization of      220
Complementary metal oxide semiconductor (CMOS), device, voltage limits      221—225
Complementary metal oxide semiconductor (CMOS), integrated circuits (ICs)      148—152 176 204
Complementary metal oxide semiconductor (CMOS), integrated circuits (ICs), components in      154
Complementary metal oxide semiconductor (CMOS), inverter, circuit diagram and schematic cross-section of      212
Complementary metal oxide semiconductor (CMOS), logic circuits      240 259
Complementary metal oxide semiconductor (CMOS), low temperature      236—237
Complementary metal oxide semiconductor (CMOS), performance      235
Complementary metal oxide semiconductor (CMOS), scaling      204 214—217
1 2 3 4 5 6 7 8 9 10 11 12
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