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Nanotech 2008 Program - Index of Keywords
- 0.25-um NMOS WE43.202
- 1 dimensional nanotubes MO25.204
- 2D crystals WE51.203
- 2D templates TU36.108
- 3-D co-culture MO81.727
- 3D cell culture MO81.227
- 3D cultivation TU41.603
- 3D imaging MO21.703
- 3D WE41.606, WE51.603, WE53.101
- 5-Aminolevulinic acid WE80.103
- 11 vessel occlusion rat model MO81.126
- AAO TU35.503
- ab-initio calculation MO82.317
- ab-initio TU41.802
- ablation TU35.417
- ABO WE80.216
- absorption MO81.926, TU35.815
- AC magnetic field TU36.002
- AC voltammetry MO81.906
- ac-corrosion MO81.906
- accelerated aging TU36.018
- accelerometer TU36.322
- accumulation WE80.111
- ACC TU36.315
- acetyl cholinesterase TU25.201
- acetylcholine esterase MO81.306, MO81.307
- acetylcholine TU35.916
- ACE WE81.610
- acoustic streaming WE51.602
- acoustic TU27.301, TU36.411
- actin TU41.101
- activated carbon electrode material WE57.105
- activated carbon supported catalysts WE81.804
- activated carbon TH28.202, WE82.205
- activated carbón TU35.421
- activation fluidisation TU28.206, WE28.403
- active rehabilitation robot WE28.302
- active species MO81.518
- actuator TU36.202, TU36.319, TU36.403
- acustics TU13.101
- acutator WE43.101
- acylglycerides MO57.503
- adaptive real-time signal processing WE48.104
- adaptive subband filtering WE23.104
- adding function MO31.101
- adhesion TU35.609, WE41.404, WE80.511, WE80.520
- adhesives TU23.104, WE48.205
- adiabatic compressibility TU35.132
- adsorber TU35.828
- adsorption capability TU36.030
- adsorption isotherms WE81.710
- adsorption MO81.805, MO81.806
- Adsorption TH21.102
- adsorption TH21.302, TU35.420, TU35.602, TU41.202, WE80.314, WE80.317, WE81.801, WE81.915, WE81.919
- advanced oxidation TU28.106
- advanced wire product WE80.511
- aerodynamic flow control TU28.207
- aerogels MO81.710
- aerosol templating WE21.305
- aerosol TU28.206, WE21.302, WE28.403
- aerospace parts TH41.202
- affinity templates TU21.501
- affordable MO27.303
- AFM MO25.103, MO81.204, MO81.906, MO81.920, MO81.920, TH45.101, TU21.504, TU35.421, TU35.512, TU35.513, TU35.609, TU35.820, TU35.908, TU35.913, WE21.602, WE21.704, WE41.701, WE41.702, WE41.703, WE42.104, WE51.706, WE80.221, WE80.520, WE80.521
- Ag nanoaggregates WE51.202
- age-related macular degeneration WE48.204
- agglomeration kinetics WE28.107
- aggregate strength TU41.201
- aggregation rate WE80.316
- aggregation TU35.802, TU41.201
- aging TH21.804
- agitator bead mills MO82.312
- agriculture WE28.104
- Ag MO81.722
- air circulation WE82.215
- air filter WE81.723
- air filtration TU35.909
- air pollutants TH21.303
- air pollution control WE28.103
- air quality WE81.714
- albumin TU35.132
- alcohol sensors MO81.812
- algae TH28.306, TU28.205
- algal dose WE81.701
- AlGaN/GaN EGFET TU25.201
- AlGaN/GaN HEMT TU36.314
- algorithms TH28.308
- Algorithm WE48.107
- aligned MO31.103
- alkyl phenol ethoxylates WE80.305
- all inorganic WE81.103
- allergy WE81.714
- alliance TU26.106
- alloy MO21.702, WE80.419
- alpha-Fe2O3 nanowires WE80.409
- alpha-Fe WE51.201
- alpha WE81.509
- alphs-lactalbumin WE80.312
- ALS TU45.102
- alternating current TH25.304
- alternative energy WE82.108
- alternative fuels WE81.820
- alternative powertrains WE82.122
- alumina MO81.612, TU35.820, TU35.913
- aluminium trihydroxide MO82.219
- aluminum TU27.503, WE80.506
- AlwaysReady WE57.107
- amine WE80.301
- amino acids TU35.921
- Aminosilane MO81.202
- ammonia WE28.104, WE81.610
- amorphization WE81.807
- amorphous carbon WE80.509
- amorphous TU31.203, WE41.703
- amphiphiles TU35.132
- amphiphilic-cyclodextrin TU35.124
- amphiphilic TU35.524, TU36.005, WE28.404
- amplification WE25.203
- amyloid peptides MO81.519
- anaerobic digestion WE81.813
- Analog TU24.104
- analysis TH13.104, TU41.703
- analytical model TU36.318
- analytics WE82.213
- anastrozole TU35.119
- anatase MO27.301
- and computer chips TH28.203
- and environmentally friendly process to provide significant logarithmic reduction in microbial counts in packaged products. Besides the food industry WE28.308
- and sterilizing antimicrobial treatment of product inside the package. Once treated the product is protected by the package from external contamination hazards. This technology will serve many different markets seeking a simple WE28.308
- and the government WE28.308
- angiogenesis TH28.303
- anhydrous TU36.213
- annealing MO81.125
- anodic aluminum oxide MO81.109, WE80.518
- anodization TU25.104, WE80.504
- anomalous absorption MO81.702
- antenna system WE48.108
- anti-angiogenic MO81.522
- Anti-Mouse protein MO81.202
- antibacterial products WE28.305
- antibacterial MO82.218, TH28.302, TU28.303, TU35.824
- antibiotic-resistance TH15.104
- antibiotics WE48.208
- antibodies TU35.301
- antibody TH15.205
- antigens WE80.216
- antimicrobial MO31.201, TU35.821, WE11.301
- antioxidant TH45.103
- antitumor activity TU35.112
- antivirals TH25.202, TH28.305
- apc gene MO81.514
- API nanoparticles MO82.217
- apoptosis MO81.507, MO81.714, MO81.722
- applications MO82.218
- applied cryptography WE48.105
- aptamers MO81.810
- aquamaker WE81.907
- aqueous phase reforming MO37.201
- arc discharge TU35.414
- arc synthesis in liquid phase MO82.129
- arc synthesis MO82.128
- architecture MO82.120, TU26.107
- arc TU35.417
- army WE53.102
- array TU21.503, WE51.802
- arsenic detection TH11.302
- arsenic TU36.210
- artefact compensation WE48.104
- arterialized blood TU28.306
- artificial bone WE48.203
- artificial intelligence MO81.117
- artificial limbs WE28.306
- artificial nose WE48.202
- artificial organ MO81.732
- aseptic filling TU31.503
- aseptic packaging TU31.503
- ASIC TH23.102, WE81.403
- assembly TU35.306, WE42.103, WE53.101, WE80.315
- assessment WE82.116
- assisted assembly TH12.101
- assistive technologies WE28.302
- asthma WE81.714
- Asthma WE82.215
- asymmetric double-gate TU30.403, TU44.102
- asymmetric gate stack WE80.606
- asymmetric inertial migration WE28.107
- at various stages of product distribution and storage WE28.308
- ataytic TH11.303
- athletes and military recruits WE28.307
- ATLAS TU24.102, TU36.308, WE80.603
- atmospheric chemistry MO82.124
- atmospheric WE81.907
- Atomic Force Microscopy (AFM) MO82.304
- atomic force microscopy TH45.101
- Atomic Force Microscopy TU35.512, TU35.513
- atomic force microscopy WE41.402
- Atomic force microscopy WE80.510
- atomic-scale WE81.816
- ATP TU11.101
- Atrazine TU35.631
- ATRP TU21.202, TU36.007
- attached below the neck and in the lumbar region could provide data on the spinal cord and two similar sensors attached to the tibia or femur could work for the extremities. Given the growing trend towards increased physical activity in all age groups WE28.307
- attachment TU25.204
- attinity biosensors MO81.129
- Au nanoparticles TU35.202
- Au nanoparticle WE80.512
- autodisplay TH28.307
- Autodock MO81.127
- automation MO21.703, TH25.102
- automobile WE81.723
- automotive lubricant additive WE28.405
- automotive TU28.201
- awards MO27.402
- azocompounds TU35.525
- Bacillus anthracis spores MO81.125
- bacillus spores MO81.203
- bacteria detection TH15.104
- bacterial delivery system TU35.108
- bacteria MO25.102, MO81.113, TH15.205, TH21.302, TH22.104, TH28.306, TU28.205, TU36.120
- bacteriophage immobilization TU35.305
- bacteriophage TU35.310
- bacterophage MO81.613
- balance WE81.403
- ballistic/quasi-ballistic transport WE44.102
- Ballistic TU35.407
- ballistic WE80.604
- band gap TU36.207
- band-stop filter WE80.416
- Barium titanate TU36.120
- barnacle WE82.305
- base resistance WE24.101
- base-growth mechanism TU35.413
- base-stacking interactions TU35.604
- BASF TU21.101
- basic-building-block WE24.103
- batteries TU28.104, TU28.201, TU35.805, WE57.106, WE80.520
- battery WE51.402, WE57.107, WE81.403, WE81.511
- bead milling MO82.217
- bead nanoparticles TH25.102
- BEM TH13.101
- benefits WE82.102
- best practice MO57.303
- beta-lactoglobulin WE80.312
- beta-stabilizing element WE80.502
- beta WE81.509
- BEV WE81.403
- Bi-2212 thin films TU35.526
- bi-directional WE43.101
- bi-phasic digestion WE81.620
- bi-stable TU36.205
- bifurcation WE81.802
- bilayers MO25.202
- bilayer TU21.503, TU36.109
- bimaterial structure TU36.204
- binary crystal TU36.108
- binding energy WE80.521
- bio detection MO81.112
- bio mass MO57.504
- bio materials WE51.402
- bio nano integration TU26.107
- bio nano materials MO81.206
- bio sensing TH28.102
- bio sensor MO25.105
- bio-absorbable WE48.203
- bio-distribution TH45.105
- bio-fuels WE81.619
- bio-nanocomplex WE21.402
- bio-refineries WE81.619
- bio-sensing WE48.202
- bio-sensors WE21.401
- bio-sensor MO81.215, MO81.609
- bioaccumulation MO81.713
- biocatalysts MO81.213
- bioceramics WE80.113
- biochemicals WE81.602
- biocompatability TU25.201
- biocompatibility WE80.504
- biocompatible MO81.527
- biocomposites MO37.303, WE81.723
- bioconjugates TH28.304
- bioconjugate MO81.314
- bioconversion MO81.228
- biodegradable polymersomes TU21.201
- biodegradable polymer MO81.702
- biodetection MO81.526, MO81.607
- biodiesel WE81.605, WE81.608, WE81.633
- biodisribution MO81.728
- biodiversity TU35.511
- bioelectrochemical TH11.303
- bioenergy MO27.204
- bioethanol MO37.204, MO57.502, WE28.207
- biofilm MO81.201, TU28.303, WE28.108
- biofouling TU28.303, WE28.108
- biofuel policy model WE81.607
- biofuels TH28.306, TU27.602, TU28.205, WE81.602, WE81.607, WE81.608, WE81.622, WE81.707, WE82.107
- biofuel MO27.202, WE81.625, WE81.628, WE81.633
- biofunctionalization MO81.509, TU25.202
- biogasoline MO37.201
- biogas WE81.220, WE81.624, WE81.813, WE82.111
- biohydrogen WE81.616
- bioimaging MO81.211, MO81.526, MO82.420, TU35.820
- biointerface TU30.303
- biological activity MO81.503
- biological applications WE80.215
- biological barriers TU35.120
- biological gels MO81.227
- biological nanoparticles MO81.211
- bioluminescence TU35.131
- biomarker screening TU25.206
- biomarkers MO35.103
- biomarker MO81.314, MO81.318, MO81.610, MO81.614, MO82.210, TU41.504
- biomass energy systems WE81.622
- biomass ignition promoter diesel alcohol WE81.614
- biomass MO27.202, MO37.402, TU27.504, TU27.505, TU31.301, TU47.305, WE81.615, WE81.708, WE82.101
- biomaterials MO81.227, TH28.301
- biomaterial MO81.102
- biomedical application MO81.909
- biomedical engineering TH28.301, TU28.307, WE28.401
- biomembrane vesicles MO81.527
- biomembrane TU21.503
- BioMEMS MO81.601, TU36.319
- biometric systems MO81.117
- biometrics TH28.101
- biomimetic TU25.101
- biomolecular detection MO81.129
- biomolecular WE42.102
- biomolecules MO82.313
- biomolecule MO81.110
- biopesticides WE81.719
- bioplastics WE81.602
- biopolymerization TU41.101
- bioprocess monitoring TH25.102
- bioreactor TU47.302, WE81.709, WE81.908
- biorecognition interfaces WE45.204
- biorefinery MO37.202
- bioremediation WE28.106
- Biosensing MO25.103
- biosensing WE28.306, WE53.103
- biosensors MO81.305, MO81.810, TU25.201, WE45.204
- biosensor MO25.101, MO81.120, MO81.125, MO81.129, MO81.611, MO81.615, TH15.101, TH15.102, TU25.202, TU25.203, WE28.304, WE80.312
- biosorption WE81.701
- biotechnology TH28.306, TU28.205, WE28.401, WE81.607
- biotech TU48.401, TU48.402, TU48.403, TU48.404, TU48.405, TU48.406, TU49.401, TU49.402, TU49.403, TU49.404, TU49.405, WE57.801, WE57.803, WE57.804
- biotemplated synthesis TU35.313
- biotin binding polypeptide TU35.305
- biotoxins WE81.720
- bio TU36.404
- bipolar FET theory WE24.102
- bipolar field-effect transistor WE24.103
- bipolar transistors TU36.317
- bipolar transistor WE24.101
- bismuth triiodide sheets TU36.108
- bistable TU36.324
- Black formula WE14.101
- black mold TU27.302
- black silicon TU23.101
- blades TH28.206
- blindness WE48.204
- block copolymers TU21.202, TU21.204, TU36.024, TU41.102
- block copolymer MO31.103, TU36.007
- block copolypeptide materials TU11.102
- block-copolymer WE21.702
- blocking WE42.203
- blood brain barrier TU35.106
- blood cell MO81.602
- blood collector TU28.306
- blood flow WE80.112
- blood type WE80.216
- blue shift MO82.106, MO82.116, MO82.310
- BMS WE81.403
- boat WE81.719
- Boiler System efficiency WE82.113
- bolometer TH42.102
- Boltzmann Transport Equation WE52.201
- bond dissociation TU35.622
- bonding of silicon to ceramics TU23.101
- bonding TH25.303
- bone diseases MO81.517
- bone substitute MO81.223
- bone TU35.314
- boron hydride TU35.902
- boronic acid TU35.411
- bottom-up MO81.118
- boundary slip WE80.204
- brain tumors TH21.303, TU15.102
- branched nanowires TU36.108
- brand protection WE28.402
- breakage mechanism TU41.201
- breakdown WE80.607
- breast cancer TU35.308, WE48.207
- brine WE81.915
- briquette WE81.615
- broken symmetry MO81.224
- Brookhaven TU26.107
- Brownian dynamics TU35.425
- BSIM4 WE14.103
- BSIM WE80.607
- bubble array WE80.224
- buckling analysis MO81.601
- buffer layer WE28.101
- building commissioning WE82.213
- building science MO27.304
- building security TU35.924
- building technologies WE82.214
- buildings MO27.302, MO37.303, WE82.205
- building TU35.924
- bulk MO81.309
- bundling MO81.125
- buried cavity TU36.115
- business processes WE82.119
- business WE82.111
- by detecting the ultrasound waves created during the initiation and growth of microcracks in the bone. Two sensors WE28.307
- C. elegans MO81.507
- CAD/CAE TH13.104
- cake filtration WE81.716
- calcium ion channel TH21.805
- calcium MO25.205, TU35.820
- camptothecin WE80.118
- can be contaminated with pathogens or other microbial contamination during handling or processing prior to being packaged. Our proprietary process treats packaged product with ozone created in the package using ultraviolet energy radiated in the package. The ultraviolet energy also provides antimicrobial treatment to the product in the package. This combined treatment of product in our customizable packaging and package storage process provides sanitizing WE28.308
- cancer diagnostics MO35.101, WE80.101, WE80.108
- cancer therapeutics TH45.103
- cancer MO31.202, MO35.103, MO81.318, MO81.517, MO81.614, TH28.303, TU28.305, TU35.111, TU35.210, WE28.301, WE48.206, WE48.207, WE55.203, WE80.107, WE80.117, WE80.122
- cantilever TU36.404, TU36.411, WE43.101
- capacitance detection MO25.104
- capacitances TU30.401
- capacitance MO81.113, TH15.103, TU36.325
- capacitive sensor MO81.120
- capacitive switch WE23.203
- capacitors TH28.105, WE57.105
- capacitor WE57.103
- capilary WE80.208
- capillary force TU35.609
- capillary instability WE41.304
- capillary WE80.112
- capsaicin WE80.319
- capsid WE21.403
- capture WE81.612, WE81.705
- carbob nanotubes WE41.802
- carbohydrate TU28.305
- carbon aerogel -supported Pt WE81.821
- carbon based nanomaterials MO82.124
- carbon black TU35.415
- carbon capture MO27.203, WE57.403
- carbon emissions MO57.401, WE82.115
- carbon fibres coatings WE28.405
- carbon monoxide TU35.820
- carbon nano tube MO81.819
- carbon nanofibers MO81.820
- Carbon Nanofibers TU35.417
- carbon nanofiber TH41.104
- carbon nanoparticles TU35.816
- carbon nanopipes MO81.516
- carbon nanoribbon WE52.201
- carbon nanospheres MO81.808
- carbon nanostructures MO82.129, TU36.102
- carbon nanotube (CNT) MO81.722
- carbon nanotube deposition TH28.203
- carbon nanotube films MO81.818
- carbon nanotube membrane MO81.707
- carbon nanotube printer TH22.104
- carbon nanotubes (CNT) MO81.405
- carbon nanotubes MO31.801, MO31.804, MO81.212, MO81.511, MO81.514, MO81.704, MO81.718, MO81.803, MO81.805, MO81.806, MO81.810, MO81.816, TH21.803, TH22.103, TH45.104, TU15.104, TU28.101, TU35.129, TU35.401, TU35.405, TU35.410, TU35.411, TU35.420, TU36.012, TU36.020, TU41.801, WE21.502, WE21.802, WE51.301, WE51.803, WE80.116, WE80.309, WE81.919
- carbon nanotube MO25.105, MO81.505, MO81.811, MO81.817, MO82.212, TU21.505, TU35.424, TU35.606, TU35.627, TU35.710, TU41.802, TU41.804, TU41.805, WE22.103, WE41.801, WE41.803, WE51.802, WE80.312, WE81.911
- carbon nanotubs TU35.509
- carbon-nanotubes TU35.416
- carbon-nuetral WE81.208
- carbonaceous material TH28.202
- carbonation MO82.219
- carbon TH21.804, TH42.104, TU35.407, TU35.823, WE41.606, WE51.603
- carborane TU35.902
- carboylic groups TU35.506
- cardiac biomarkers TH25.104
- cardiac myocytes TH45.204
- cardiomyocyte TU35.633
- cardiomyopathy MO81.402
- cardoon MO27.202
- carrageenan MO81.220
- carrier transport WE52.201
- carrier-based model TU36.309
- cartilage MO81.508
- Casimir TU36.202
- catalysis MO57.503, MO82.204, TU28.206, TU35.823, WE28.403
- catalyst seed MO81.804
- catalyst-containing carbon TU36.123
- catalysts TU35.415, WE21.303, WE28.405
- catalyst MO82.212, TU28.206, WE28.403, WE81.507, WE81.801
- catalytic exothermic reactions TU35.416
- catalytic nanoparticles WE57.402
- catalytic supporter WE21.305
- cathode material TU28.202
- cathode WE81.815
- cathodic protection MO81.906
- cationic lipids TU35.212
- caviation rheology MO81.120
- CBA WE28.106
- CCVD WE41.403, WE80.511
- CD19 TU35.130
- CD36 WE48.204
- CDM WE81.612, WE81.705
- cDNA microarray MO81.504
- CdSe aerogel TU35.903
- CdSxSe1-x WE80.420
- CD TU35.820
- cell adhesion MO81.120, TH45.102
- cell cultures TU41.602
- cell dielectric property TU36.210
- cell division MO81.731
- cell signaling MO81.730, MO81.732
- cell viability MO81.516
- cell-based delivery MO81.315
- cell-based screening WE28.306
- cell-surface signaling TU41.503
- cell-virus interactions TU35.311
- CellChip TU41.603
- cells MO81.731, WE80.109
- cellular uptake TU35.820
- cellular TU11.101
- Cellular WE48.107
- cellulose binding module TU35.305
- cellulose crystals WE80.320
- cellulose derivatives MO81.708
- cellulose media TU35.909
- cellulose nanocrystals WE41.705
- cellulose MO31.703, WE28.207, WE80.310, WE81.628
- cellulosic ethanol MO37.202
- cellulosic MO37.203
- cell MO81.505, MO81.602, WE57.107
- central nervous system regeneration MO25.203
- Centri-Separator TU35.828
- centrifugal microfluidics TH25.103
- ceramic microarrays WE80.217
- cerebral palsy WE28.303
- Ceria nanomaterials using MBE MO82.222
- ceria TU35.820
- cerium oxide TH45.103, TU41.202
- CERs WE81.612, WE81.705
- certification WE82.129
- CFD simulation WE80.206
- CFD MO26.201, TU36.301, WE43.201, WE51.602, WE57.401, WE80.214, WE81.811
- chalcogenide MO82.114, TU25.202, WE42.204
- characterization methods TU36.318
- characterization MO81.734, MO81.927, TU35.135, TU35.517, TU36.320
- charge variation MO82.207
- charge WE81.403
- cheese whey MO27.404
- chelotropic traps MO82.420
- chemi-sorption TU35.523
- chemical dosing TU41.602
- chemical mechanical polishing WE43.105
- chemical sensors TU35.523
- chemical sensor MO81.811
- chemical solution TU36.108
- chemical storage WE28.201
- chemical vapor deposition MO27.403, MO31.801, MO31.802, TH42.106, TU35.401, TU35.416, WE51.301, WE80.410
- chemical vapour deposition MO82.126
- chemical warfare agents MO81.301
- chemically modified surface MO81.104
- chemicals TU48.207, WE58.302
- chemical MO81.116
- Chemiresistive MO81.103
- chemistry and chemical analysis WE28.202
- chemotaxis TU36.202, WE80.223
- chemotherapy WE48.206
- chip-base TH15.201
- chirality MO81.224
- chitosan nanoparticles TU21.203
- chitosan MO81.529, MO81.532, TU45.108, WE80.102, WE80.103
- chlorine-containing media MO82.128
- chondroitin sulfate MO81.508
- CHP MO27.304
- chromium (VI) WE81.710
- CIGS TU47.602
- circular dichroism WE21.802
- circular dichroïsm TU35.132
- circulating fluidized bed WE81.803
- Citrate-urea combustion MO82.201
- citric acid MO82.221
- cladded dots MO82.207
- Clausius-Mossotti factor TH15.103
- clay particles TU35.919
- clean coal MO27.203, WE57.403
- clean energy MO37.401
- clean industrial processes TU31.503
- clean process MO27.401
- clean rooms MO82.412
- clean technology WE81.717
- clean tech WE28.201
- cleaner TU31.501
- cleaning process TH22.104
- cleaning WE81.723
- cleanroom MO81.124, WE81.918
- cleansing of soils WE28.106
- cleantech MO37.403, TH28.306, TU28.205, WE28.103, WE28.108, WE82.117, WE82.120, WE82.129
- climate change WE82.126
- clinical diagnostics MO81.607
- clothing MO81.725
- clusters TU35.802, TU35.823
- CMOS chip MO81.304
- CMOS-MEMS TU36.401
- CMOS TU36.409
- CMP WE43.105
- cMUT TU36.320
- CNT network transistor MO81.126
- CNT transistors MO82.120
- CNTs MO81.820
- CNT MO81.727, MO81.731, TU13.101, TU21.505, TU23.102, TU35.901, TU41.805
- CO oxidation MO81.735, TU47.404, WE81.713, WE81.804
- co-culture model MO81.730
- co-culture system TH25.101
- co-stimulatory molecules MO81.506
- CO2 capture WE81.718
- CO2 neutral MO57.502
- CO2 reduction WE82.113
- CO2 MO57.504
- Co2 WE81.208
- CO2 WE81.403, WE81.707, WE82.105
- coacervate complexes WE80.317
- coagulation TU41.201, WE28.107, WE80.316
- coal TU47.305
- coarse grain simulation TU35.924
- coarse-grain simulation WE43.203
- coassembly TU41.203
- coateing WE80.520
- coatings MO31.103, MO82.133
- coating TH28.205, TU27.302, TU35.409, WE21.701, WE41.403, WE80.303
- Cobalt oxides WE81.713
- CoFe2O4 WE80.113
- cognitive sciences WE23.105
- coil WE81.401
- coir fiber WE81.723
- collaborative TU26.107
- collagen TU25.102, WE41.703
- collector WE81.108
- colloidal delivery systems WE41.102
- colloidal dispersions TU41.201
- colloidal interactions TU41.201
- colloidal particles WE41.103
- colloidal quantum dots TH12.202
- colloidal synthesis WE57.205, WE81.103
- colloids WE80.520
- colloid TU35.814
- color imaging TH28.103
- colorectal cancer MO81.514
- colourant WE51.206
- combinatorial libraries TU35.306
- combined cycles TU28.208
- combustion synthesis TU35.701
- combustion TU47.305
- commercial alumina production MO57.302
- Commercialization TU27.601
- commercialization TU27.603, TU30.503, TU36.220
- commercial TU41.805, WE41.201
- commerical buildings WE81.202
- commericalize WE82.101
- comminution MO82.217
- communications MO37.401
- community benefits WE82.102
- community relations WE82.127
- compact device modeling WE54.101
- compact modeling MO82.110, TU36.309, TU44.103, WE24.101
- compact models TU24.103, WE14.102
- compact model TU14.104, TU30.402, TU44.101, WE14.103, WE44.102, WE54.104, WE54.105, WE80.607
- compaction WE81.615
- company WE82.116
- comparison function MO82.120
- compensation WE23.103
- complexity TU35.613
- components WE25.202
- composite materials TH28.203
- composite nanodevice MO81.531
- composites TH11.204, TH41.104, TU35.411, TU36.020, WE41.802, WE51.303, WE80.520
- composite MO81.524, TU36.014
- Composite TU36.027
- composite WE21.504, WE41.804, WE80.308
- compositionally graded SiGe buffer TU36.312
- compound combustion TU28.208
- compound cycles TU28.208
- compound cylinder structure TU28.208
- compressed air energy storage (CAES) MO57.403
- compressed earth block MO27.302
- computational fluid dynamics WE81.502
- computational kinetics MO82.124
- computational MO21.702
- computer chips TU35.416
- computer simulation WE81.820
- concatenation TU35.632
- concave TU36.308
- concentration gradient TU36.202, WE80.223
- concentration MO21.704
- concrete MO37.301, TU28.209, WE82.205
- concurrent processes TU35.632
- condcuting polymer WE41.801
- conductance TU35.815
- conducticity WE80.403
- conducting polymer composites WE23.202
- conducting polymer nanocomposites TU36.016
- conductive epoxies TU35.812
- conductive polymers TH28.106
- conductive polymer MO27.403, WE48.106
- conductive TU36.121
- conductivity TU36.020, WE22.104, WE41.804, WE80.403, WE80.418
- confidence TU26.105
- conformational transitions TU35.132
- conjugate WE80.108
- conjugation TH15.203
- consortium TU26.104
- constant-charge TU36.323
- construction cost MO82.412
- construction properties WE82.203
- construction TU26.107, TU28.209
- contact angle MO81.120, TU35.609
- contact formation WE52.203
- contact imprinting MO81.202
- contact time WE81.701
- contact-angle hysteresis TU36.301
- contact WE23.203
- contained assay platform WE80.218
- contamination TU36.216
- contineous hydrothermal synthesis WE41.202
- continuous commissioning WE82.206
- continuous inkjet printing TU41.601
- continuous model WE80.605
- continuous N2O reduction WE81.712
- contour integration TU41.802
- contour WE80.607
- contractile force TU35.633
- contrast agents MO35.102
- contrast agent WE51.205
- controlled drug delivery MO81.517
- controlled radical polymerization TU21.202
- controlled release MO81.228, TU35.119
- control TH15.203
- controoled drug release MO25.206
- convection effect TU36.102
- conventional electric net WE82.124
- convergence WE23.105
- converging technologies TU26.106
- conversion MO57.501
- conveyer WE81.719
- cooling TU27.301
- cooperativity WE51.705
- copolymers TU41.203
- copper catalyst WE81.806
- copper nanoparticles TU35.409
- copper phthalocyanine (CuPc) WE81.120
- copper sulfide WE57.205, WE81.103
- copper TU36.016, WE80.323, WE82.210
- coquina WE81.906
- core decisions MO82.412
- core-shell particles WE28.404
- core-shell TU36.022
- coreflood WE81.513
- corn ethanol WE81.625
- corporate social responsibility MO57.303
- corporate social WE82.127
- corporate strategy WE82.108
- corrosion performance TU36.017
- corrosion protection TU36.016
- corrosion MO37.301
- cosmetic creams TH28.302
- cosmetic ingredient solubilisation WE28.405
- cosmetics TH28.304
- cosmetotextiles TH28.302
- cost analysis TU31.203
- cost benchmarking TU31.203
- cost effectiveness WE28.201
- cost effective MO37.304
- cost impact WE81.723
- coupled resonators TU36.206
- cracking MO57.503
- critical frequency TU36.210
- crossbar architectures MO82.119
- crossbar ionic nanodevices MO81.814
- crosslinking WE80.301
- cryo microscopy MO21.703
- cryo-pumping TU35.521
- cryogenic measurements TU35.521
- Cryptosporidium parvum MO81.711
- crystal direction WE80.409
- crystalline transition WE80.301
- crystalline WE41.703
- crystallinity TU36.011
- crystallite size WE80.308
- crystallite MO31.703
- crystallization processes TU21.101
- crystallization TU35.518, WE51.704
- crystal MO31.103
- CTN TU23.104
- CT MO35.102
- curcumin TH28.304, TU35.127
- curing of coatings TU31.503
- current collapse TH23.103
- current-voltage characteristics TU36.111
- current TU35.403
- curriculum MO82.406, MO82.407
- customer TU26.105
- customized targeted PEG linkers TU35.103
- CVD diamond TH25.301
- CVD MO27.403, TU47.602
- cyclases WE48.208
- cyclic peptides WE48.208
- cyclic voltammetry TU35.911
- cycling TH25.304
- Cyclodextrins TU35.109
- cyclodextrin MO81.127, MO81.503
- cynara MO27.202
- cytochrome TU35.820
- cytokine MO81.722, TU35.208
- cytostatics WE48.208
- cytotoxicity MO81.514, MO81.714, MO81.716, MO81.850, TH21.301
- cytotoxic MO81.727, TU35.116
- damage TU35.614
- damping TH13.103
- data monitoring TU31.201
- data storage WE43.101
- data switching TH28.102
- DC-DEP WE80.216
- de nitrification WE28.104
- deagglomeration WE41.802
- debye length MO81.120
- decentralized energy sustainable wastewater treatment WE82.215
- decentralized WE81.917, WE82.118
- decision analysis MO81.719
- decision making MO82.411
- deep reactive ion etching MO82.112
- defects MO81.816, WE81.515
- defect TU35.620, TU35.627
- defense TU35.924
- DeFET MO82.323
- deformation measurement WE51.706
- degradable TU35.106
- degradation TU35.411
- dehydrogenation MO57.505
- deliery TU45.105
- delivery MO81.505, TU35.205, TU45.103
- demand response MO37.403
- denaturation MO81.121
- dendrimers TU35.613
- dendrimer MO81.522, MO81.524
- dendritic cells MO81.506, TU35.208
- density functional calculations TU35.921
- density functional theory TU30.304, TU35.616
- density gradient TU35.623
- density profile TU35.609
- dental fillers TU36.019
- deoxyribozyme TH28.305
- depletion TU36.325
- deploy WE82.101
- depolymerization WE82.130
- deposition TU35.517, TU36.123
- depth of penetration TH28.103
- desalination MO37.106, MO81.707
- design for manufacturability WE80.608
- design for manufacturing TU36.303
- design methodology TH13.104
- design parameters WE81.913
- design TU26.107, WE23.204, WE43.204
- desorption WE81.701
- destruction MO81.301, WE81.612, WE81.705
- desulfurization WE81.801
- detection MO81.110, MO81.113, MO81.116, MO81.124, MO81.316, TU35.133, TU35.924, TU36.409, WE48.101, WE81.918
- developing economy housing WE82.204
- develop WE82.101
- device compiler WE14.103
- device fabrication TH12.202
- device modeling TU30.401
- device physics MO82.110, TU36.309, TU36.311, TU44.103
- devices MO81.124, MO81.920, TH28.207, WE81.505
- dewaterability WE81.709, WE81.820
- dewatered sludge WE81.709, WE81.820
- DFP TU25.201
- DFT/Kohn-Sham TU41.802
- DFT MO21.702, MO81.816, TU35.616, TU36.032
- DG MOSFET TU30.401, WE80.605
- DG-MOSFETs TU44.103
- diabetes MO81.703
- diafiltration MO81.620
- diagnostic device TU28.308
- diagnostic kit TU28.309
- diagnostics MO81.120, TU41.503, WE28.305
- diagnostic TU28.305
- diameter control MO31.802
- diamond TH21.802, TH28.202, TU36.412
- diamoond WE80.506
- dicing TU36.216
- dielectric constant TH28.105
- dielectric film testing WE48.202
- dielectric properties MO81.820, WE80.308
- dielectric property TU36.120
- Dielectric Spectroscopy MO81.120
- dielectric WE41.202, WE81.510
- dielectrophoresis (DEP) MO81.113
- dielectrophoresis separation WE41.604
- dielectrophoresis MO35.103, MO81.211, MO81.602, TH15.103, TH22.103, WE41.606, WE51.603, WE80.211, WE80.212
- diesel exhaust fluid WE81.633
- diesel WE82.301
- diffraction limited MO25.101
- diffraction TU41.504
- diffuse light TU31.203
- Diffusion MO82.317
- diffusion TU35.120, TU35.916, WE80.520, WE81.820
- diffusive TU35.407
- diffusivity TU36.202, TU36.307
- digestion WE41.102
- digital design TU36.420
- digital magnetic tagging MO81.607
- digital microfluidic multiplexer TU36.301
- diluted magnetic semiconductors MO81.921, TU21.303
- diluted magnetic semiconductor MO82.301
- dimensionality MO81.528
- diode TU36.310
- dip pen nanolithography TU36.121, TU36.122, TU41.504
- dip pen TU21.505
- dip-pen nanolithography TU21.503, TU21.504, TU41.502
- dipolar force TH12.201
- direct carbon WE57.403
- direct conversion WE81.509
- direct current dielectrophoresis WE80.216
- direct deposition TU21.504
- direct methanol fuel cell WE28.207
- direct-fuel cell WE81.820
- directed cell adhesion WE21.401
- directed self assembly WE51.704
- directed self-organization WE57.402
- dirt-shedding WE11.301
- disease WE81.714
- disinfecting WE28.308
- disinfection WE81.909, WE81.912
- disk resonator TU36.206
- dispatachable wind MO57.403
- dispenser TU41.604
- dispersing grinding TU35.828
- dispersions MO21.705, WE41.802
- dispersion MO81.802, MO81.805, MO82.207, TH11.204, TH41.204, TU35.822, TU35.828
- display TU35.905
- dissipation TU30.303
- distortion WE23.103
- distributed generation MO37.401, MO37.402
- distributed TU13.101
- DLS TU35.820
- DLVO theory TU41.201
- DMFC WE28.207
- DMG TU36.308, TU36.314, WE80.603
- DM TU36.313
- DNA biosensor WE81.720
- DNA chip TH45.203
- DNA conjugated nanoparticles WE80.315
- DNA extractor TH45.203
- DNA Hybridization MO81.120
- DNA manipulation WE41.605
- DNA nanostructures TU35.614
- DNA self-assembly TU35.614
- DNA sequencing MO81.611, WE80.209
- DNA stretching WE41.605
- DNAzyme TH28.305
- DNA MO25.103, MO25.105, MO35.103, MO81.224, MO81.532, MO81.603, MO81.605, MO81.920, TH12.102, TU35.129, TU35.405, TU35.411, WE21.802, WE41.703, WE42.102
- docetaxel WE48.206
- Donnan theory MO81.707
- dopant TH21.204
- doping dependence MO81.908
- doping WE21.801, WE54.103
- dot TU35.903
- double emulsion solvent evaporation TU35.116
- double flash power plant WE81.206
- double-gate MOSFET WE44.102
- double-gate TU30.404, TU44.104, WE54.103, WE54.104
- double-helical DNA structure TU35.604
- doublle wall carbon nanotubes WE21.801
- Doxil WE48.207
- doxorubicin TU15.104, TU35.130, WE80.115
- DPN TU21.502, TU21.504, TU21.505, TU36.122, TU41.505
- drag force WE80.221
- drag/heating reduction TU28.207
- drag WE82.305
- DRIE MO82.112
- drift-diffusion analysis WE41.603
- drift-diffusion theory WE24.103
- drilling MO57.401
- drinking water WE81.906, WE81.909
- drop mixing WE41.602
- drop-on-demand WE21.601, WE21.603
- droplet formation WE80.206
- drought WE81.721
- drug accumulation WE80.123
- drug delivery systems MO82.406, TU35.110
- drug delivery MO81.404, MO81.516, MO81.912, MO81.912, TH15.204, TH25.204, TH28.202, TH28.309, TU35.102, TU35.119, TU35.119, TU35.129, TU35.307, TU35.308, WE28.305, WE41.204, WE45.201, WE48.205, WE80.116, WE80.120
- drug discovery WE48.202
- drug eluting devices MO81.221
- drug-resistant bacteria WE55.205
- drugs without side effect TU35.104
- drug TU35.135
- drywall TU27.302
- DSC MO82.201
- DSMC WE80.201
- dual gate TU36.312
- Duffing WE43.103
- dustmites WE82.215
- DWCNT WE80.403
- dye sensitised solar cells TU35.917
- dye sensitized solar cell TU47.601
- dye-sensitized solar cells WE81.102
- dye-sensitized solar cell TU47.603
- dyes MO81.708
- dynamic mechanical thermal properties WE80.320
- dynamic radiation pattern WE48.108
- dynamic range TU36.318
- DYNO-MILL MO82.217
- e-beam lithography MO82.126
- E-Paper WE48.106
- e-waste WE82.130
- E.Coli MO81.613
- each the size of a penny WE28.307
- EAM MO21.702
- earlobe TU28.306
- early developmental stage MO81.721
- earth friendly MO57.301
- earthquake TU36.404
- easy-to-clean WE41.405
- EB-PVD coaters TH28.206
- ebeam lithography TH22.102
- eco-labels WE82.129
- ecodesign WE82.119
- ecological footprint MO37.204
- ecological impact MO81.720
- economic development TU27.603
- economic feasibility MO57.401
- economics TU27.501, WE82.122
- economic WE81.610
- EDA TU36.303
- Edge roughness WE41.605
- EDMOS compact WE24.104
- education MO82.402, MO82.407, TU31.301
- EES WE81.206
- effective drive current TU14.103
- efficiency gain WE82.113
- efficiency TU47.305, WE80.111, WE82.108, WE82.301
- effluent threshold WE81.709
- EFM MO81.201
- EGFR MO31.704, MO35.104
- EGS MO57.401
- EHDA WE80.206
- Ehrlich carcinoma WE80.115
- elastic modulus TU35.706
- elastomeric fiber TU36.023
- elecrophilic molecules TH21.803
- electric conductance MO25.105
- electric double layer WE80.231
- electric effects WE80.226
- electric field induced inkjet head TU36.212
- electric field MO81.816, MO82.324, WE80.421
- electric generation TU28.101
- electric range TU28.202
- electrical biosensors MO25.104
- electrical characterization TU41.804
- electrical conductivity WE51.303
- electrical modeling TU23.102
- electrical properties WE80.219
- electrical property TU35.710
- electrical sensors WE81.514
- electrical MO25.205, MO81.612, TU25.203
- electricity generation MO57.502
- electricity MO37.403
- electric TU47.403, WE82.122, WE82.210
- electrification WE81.624
- electro-active polymer WE48.102, WE48.103
- electro-deposit MO82.133
- electrocatalysis WE81.816
- electrochemical impedance spectroscopy MO81.129, TU36.017
- electrochemical polishing WE51.703
- electrochemical polymerization TU36.016
- electrochemical potential theory WE24.103
- electrochemical MO81.613, WE41.404, WE80.503
- electrochemistry MO82.308
- electrode polarization MO81.120
- electrodeposition WE80.415
- electrodes TU31.305
- electrode TU35.417
- electrokinetics MO82.316, WE80.204
- electrokinetic MO35.103
- electroless WE81.507
- electroluminescence MO82.116
- electrolysis TU31.305
- electrolytes WE57.107
- electrolytic MO81.918
- electrolyzer WE81.629
- electromagnetic properties TU35.514
- electromagnetic radiation TH28.207
- electromagnetic rays TH28.103
- electromanipulation TH15.103
- electromigration WE14.101
- electromyography WE28.303
- electron beam irradiation TU35.612
- electron beams TU31.503
- electron density TU41.802
- electron energy loss TU35.612
- electron field emitter TU41.804
- electron micro-gun array TU41.805
- electron microscopy TU36.122
- electron multiplication WE51.803
- electron scattering TU35.612
- Electron states TH42.105
- electron transport WE52.203
- electron-phonon TU35.627, WE51.802
- electron-windless model WE14.101
- electronic chemicals WE28.405
- electronic identifiers WE57.701
- electronic structure calculation TU41.802
- electronics MO82.102, TU28.201, WE11.401, WE57.606, WE57.702, WE57.703, WE57.704, WE57.705, WE58.203
- electron TU35.612
- electrooculography WE48.104
- electrooptic cells MO81.803
- electroosmosis MO82.316
- electrophoresis MO82.316, TU36.123
- electropsun fibers (aligned MO81.205
- electrorheological effect WE42.103
- electrospinning MO81.215, TU35.713, TU35.819, TU36.014, TU36.030, TU47.601, WE57.103, WE81.715
- electrospray WE80.507
- electrostatic complexation TU41.203
- electrostatic devices TU36.407
- electrostatic TH13.102, TU36.401, WE21.603, WE23.204
- electrowetting MO81.113
- elemental mercury WE81.711
- EM energy conversions TU35.812
- embryonic WE55.202
- emergemcy response coordination TU36.404
- emergency TU36.404
- emerging contaminants WE81.910, WE81.916
- EMG bio-feedbacks WE28.302
- emissions reduction TU47.305
- emissions TU47.403
- emission WE81.719
- emitter TH21.802
- emitting characteristics WE51.703
- empirical model TU36.307
- emulsifying MO82.219
- emulsion polymerization TU36.022
- emulsion TH21.202, TU35.822
- encapsulation TU35.605, TU35.828, WE41.203, WE80.312
- endohedral metallofullerenes TU36.101
- endosomal escape TU45.108
- endothelail cells WE80.223
- endothelial cells TU35.308
- energetics WE21.403
- energy conversion TH28.207, WE57.202
- energy density WE81.510
- energy deposition TU28.207
- energy efficiency MO27.304, MO37.305, MO57.304, TU31.503, WE28.201, WE82.120, WE82.202, WE82.208
- energy efficient MO37.304
- energy harvesting WE57.104
- energy lifecycle WE82.108
- energy management system WE82.208
- energy management MO37.403, WE82.213
- energy monitoring WE82.213
- energy policy WE81.625
- energy recovery device MO37.106
- energy storage MO37.402, WE28.206, WE57.203, WE81.511
- energy systems WE81.514
- energy transfer MO81.303
- energy MO27.303, MO81.528, MO82.403, TU35.420, TU48.102, TU48.103, TU48.105, TU48.106, TU49.101, TU49.102, TU49.103, TU49.201, TU49.202, TU49.203, TU49.204, TU49.205, TU49.206, WE11.401, WE57.107, WE57.601, WE57.602, WE57.603, WE57.604, WE57.605, WE58.101, WE58.102, WE58.103, WE58.104, WE58.105, WE58.106, WE81.206, WE81.209, WE81.820, WE82.107
- engine optimization WE82.320
- engineered organisms WE81.607
- engineering TU26.107
- engines WE81.220
- engine WE81.401
- enhancement TU35.403
- enrichment MO81.318
- entrepreneurship TU27.603
- enviromental study TH21.303
- environment responsibility WE82.127
- environmental fate MO81.720
- environmental health TH11.304, TH21.304, WE82.104
- environmental impact MO81.704
- environmental recycling WE82.134
- environmental releases MO81.738
- environmental samples TH11.302
- environmental technology WE28.207
- environmentally friendly MO37.304
- environmental MO27.401, MO81.705, WE81.714
- environment MO37.302, MO81.709, MO81.738, WE28.103, WE28.108, WE81.707, WE81.722
- enzimatic sensor MO81.102
- enzymatic hydrolysis WE81.628
- enzymes MO37.202, WE80.520
- enzyme MO81.402, MO81.817
- EPA regulations WE81.723
- EPA MO81.738
- epidemiology WE81.714
- epoxy TU35.819
- equipment WE81.719
- erosion protection TH28.205
- erosion-resistant and damping coatings TH28.206
- erythrocytes WE80.216
- ESCA TU35.815
- ESD MOS model WE14.104
- ESD TU36.216
- estradiol linker MO81.615
- ethanol MO37.203, MO81.105, TU27.501, WE81.608, WE81.628, WE81.907
- ethics MO81.738
- ethylene MO57.505
- Eu-doped G2O3 TU35.510
- EUV WE52.101
- evaporation WE80.322, WE81.502
- EVOH WE81.723
- evolution WE55.204
- excretion MO81.511
- exergy WE81.206
- exfoliation TU35.505
- exopolysaccharide TU47.302
- expancel WE80.303
- experimental WE81.813
- experiment TU36.320
- explicit surface potential TU44.102
- exposure TH21.303
- extension TU35.518
- extracellular matrix MO31.202
- extracellular recording TU36.220
- extracellular TU35.205
- extraction WE24.104
- fabrication process TU35.710
- fabrication TH42.102, TU36.206
- fabrictation WE11.402
- facades MO37.303
- Facade WE82.205
- factor TU35.403
- faster TU31.501
- fate MO81.713
- FD-SOI devices TH23.104
- FDG WE28.301
- FDTD-PIC MO82.123
- Fe-oxalate WE51.201
- FEA WE41.701
- FEM(finite element method) TU36.208
- FEM TH13.104, TU41.802
- fermentation WE81.616
- ferritin TU41.502
- ferroelectrics MO82.303
- ferroelectric TU36.032
- ferromagnetism MO81.921, TU35.616
- FET TH23.103
- FE TU41.805
- fibDAC TH25.306
- fiber optics WE28.304
- fibers MO81.215
- fibre WE41.304
- fibrillogenesis TU25.102
- fibrin TU41.101
- fibrous scaffolds MO81.205
- FIB WE22.105, WE42.204, WE51.706, WE53.101
- fidelity MO82.105
- field effect tansistor TU41.804
- field emission display MO82.123
- field emission TU35.627, WE51.802, WE51.803
- field emitter TU41.805
- field plate TH23.103
- field-effect transistor MO81.121
- field-emission TH28.203
- fiel
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