Nanocoatings: size effect in nanostructured films
Gespeichert in:
1. Verfasser: | |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Berlin [u.a.]
Springer
2011
|
Schriftenreihe: | Engineering materials
|
Schlagworte: | |
Online-Zugang: | Inhaltstext Inhaltsverzeichnis |
Beschreibung: | XII, 251 S. Ill., graph. Darst. |
ISBN: | 9783642179655 3642179657 |
Internformat
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Datensatz im Suchindex
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adam_text |
IMAGE 1
CONTENTS
1 SYNTHESIS, PROCESSING AND APPLICATION OF NANOSTRUCTURCD COATINGS 1
1.1 WHAT IS NANOTECHNOLOGY? 1
1.2 THE ROLE OF SIZE EFFECT IN NANOTECHNOLOGY 1
1.3 NANOPARTICLES 3
1.4 PRODUCTION OF NANOPARTICLES 4
1.5 APPLICATIONS OF NANOPARTICLES 4
1.6 THIN FILMS 4
1.7 PRODUCTION AND APPLICATION OF THIN FILMS 6
1.7.1 INTRODUCTION TO SOL-GEL METHOD 6
1.7.2 SOL-GEL CHEMICAL REACTION 10
1.7.3 THE EFFECT OF CATALYST HYDROLYSIS 11
1.7.4 ELECTRIC PRECIPITATION 11
1.7.5 THE ROTATE COATING 11
1.7.6 SCATTERING COATING 11
1.7.7 SELF LAYOUT 12
1.7.8 PLASMA POLYMERIZATION 12
1.7.9 ANNEALING 13
1.7.10 HEATING OXIDATION 14
1.8 APPLICATIONS OF NANOSTRUCTURED COATINGS 15
1.9 COATING AND SURFACE ENGINEERING 17
1.10 COATING ISSUES AND APPLICATIONS 17
REFERENCES 18
2 SIZE DEPENDENCY IN NANOSTRUCTURES 29
2.1 INTRODUCTION 29
2.2 NANOCOMPOSITES AND THEIR PRODUCTION METHODS 29
2.2.1 THERMAL SPRAYING NANO-COMPOSITES 29
2.2.2 TRANSITIONAL METAL NITRIDE COATINGS 33
BIBLIOGRAFISCHE INFORMATIONEN HTTP://D-NB.INFO/1008556041
DIGITALISIERT DURCH
IMAGE 2
CONTENTS
2.2.3 SUPER ROUGH AND SUPER HARD NANOCRYSTALLINE COATINGS 35
2.2.4 NANOCOMPOSITE COATINGS 37
2.3 ELECTROCHEMISTRY ROLE IN PRODUCTION OF NANO-COATINGS 46 2.3.1
ELECTRO-DEPOSITION USING POROUS TEMPLATES 46
2.3.2 NANO-COATINGS PROPERTIES 47
2.4 MECHANICAL PROPERTIES 48
2.5 CORROSION PROPERTIES 52
2.6 HYDROGEN TRANSITION AND SENSITIVITY 54
2.7 MAGNETIC CHARACTERISTICS AND IONIC CONDUCTIVITY 55
2.8 THERMAL STABILITY 58
2.9 NANOCOATINGS APPLICATIONS 58
2.9.1 STRUCTURAL APPLICATIONS 59
2.9.2 FUNCTIONAL APPLICATIONS 59
2.9.3 CLASSIFICATION OF APPLICATIONS 60
2.10 KEY POINTS FOR DEVELOPMENT 60
2.10.1 ENVIRONMENT AND STABILITY 60
2.10.2 WEIGHT AND VOLUME REDUCTION 63
2.10.3 SMART LAYERS AND STRUCTURES 63
2.10.4 PROCESSES' UNDERSTANDING 63
2.10.5 TRAINING 63
2.11 SURFACE ENGINEERING SHARE IN KEY INDUSTRY SECTIONS 64 2.12
ESTIMATION OF CORROSION AND EROSION COSTS 64
2.13 SURFACE ENGINEERING IN AUTOMOBILE INDUSTRY 65
2.14 SURFACE ENGINEERING IN POWER GENERATION INDUSTRY 65
REFERENCES 66
CHARACTERIZATION OF NANOSTRUCTURED COATINGS 77
3.1 INTRODUCTION 77
3.2 DEFINITION OF NANOSTRUCTURED MATERIALS 78
3.3 THERMODYNAMICS OF NANOSTRUCTURED MATERIALS 83
3.4 INTERFACES THERMODYNAMICS 85
3.5 INTERFACE TRACTION 86
3.6 ADDITIONAL FREE ENERGY ON A SOLID WITH NANOMETRIC STRUCTURE 89
3.7 INTERFACE STRESSES 90
3.8 CHEMICAL EQUILIBRIUM IN CURVED INTERFACE 91
3.9 INFLUENTIAL INTERFACE 92
3.10 PHASE INTERFACE 93
3.11 MEASUREMENT OF THERMAL AND ELECTROCHEMICAL PROPERTIES 93 3.12
CONDENSED AND COMPRESSED METALS 94
3.13 METHODS FOR PRODUCTION OF NANOSTRUCTURED MATERIALS 95 3.14
NANO-TECHNOLOGICAL COMPATIBILITY IN COATING 98
3.15 IMPROVEMENT OF COATING QUALITY USING NANOTECHNOLOGY 99
IMAGE 3
CONTENTS IX
3.16 ABRASION, SCRATCH, AND CORROSION RESISTANT COATINGS 99 3.16.1
COATINGS RESISTANT AGAINST SCRATCH, ABRASION, CORROSION, AND
ENVIRONMENTAL AGENTS 99
3.16.2 NANO-METRIC ABRASION, SCRATCH, AND CORROSION RESISTANT COATINGS
100
3.16.3 USING ALUMINA AS A SCRATCH AND ABRASION RESISTANT COATING 101
3.16.4 DESIGNING LIGHT RESISTANT PANELS FOR PLANE BODY 101 3.16.5
CERAMICS REINFORCED BY CARBON NANO-TUBES 101 3.17 NANO-COATING RESISTANT
AGAINST CORROSION 102
3.18 USING NANO-PARTICLES FOR COATING IN TRANSPORTATION INDUSTRY 102
3.19 COATING APPLICATIONS IN DEFENSE AND AEROSPACE INDUSTRIES . . . 103
3.20 USING CERAMIC NANO-COATINGS IN US NAVY 103
REFERENCES 104
4 SIZE EFFECT IN ELECTROCHEMICAL PROPERTIES OF NANOSTRUCTURED COATINGS I
LL
4.1 INTRODUCTION I LL
4.2 THERMODYNAMIC EQUILIBRIUM 113
4.3 CLASSICAL NUCLEATION THEORY 115
4.4 ATOMIC NUCLEATION THEORY 116
4.5 KINETICS OF FORMATION OF NUCLEUSES IN ELECTRO-CRYSTALLIZATION 117
4.6 ELECTRODE SURFACE ENERGY STATE 119
4.7 NUCLEUS SITUATION ON ELECTRODE SURFACE 120
4.8 GROWTH OF 3-D NANO-NUCLEUSES 122
4.9 METAL ION STRUCTURE 124
4.10 DOUBLE-LAYER STRUCTURE 124
4.10.1 HELMHOLTZ-PERRIN MODEL 125
4.10.2 GOUY-CHAPMAN MODEL 125
4.10.3 STERN-GRAHAM MODEL 126
4.11 DETERMINING STAGES FOR RATE OF ELECTRODE REACTIONS 126
4.12 CONCENTRATION OVER-POTENTIAL 127
4.13 CHARGE TRANSFER OVER-POTENTIAL 128
4.14 CRYSTALLIZATION OVER-POTENTIAL 128
4.15 OHM OR RESISTANCE OVER-POTENTIAL 128
4.16 PULSE ELECTROCHEMICAL DEPOSITION METHOD 129
4.17 CHARGING AND DE-CHARGING OF DOUBLE LAYER IN PULSE ELECTROPLATING
130
4.18 NANOSTRUCTURED COATING PROPERTIES 132
4.18.1 MECHANICAL PROPERTIES 132
4.18.2 CATALYST PROPERTIES 133
IMAGE 4
X CONTENTS
4.18.3 ELECTRICAL PROPERTIES 133
4.18.4 ANTI-CORROSIVE PROPERTIES 133
REFERENCES 138
5 SIZE EFFECT IN MECHANICAL PROPERTIES OF NANOSTRUCTURED COATINGS 149
5.1 INTRODUCTION 149
5.2 NANOCOMPOSITE COATING PRODUCTION METHOD 150
5.3 PROVISION OF NANOCOMPOSITE COATINGS WITH PLATING METHOD . . 151 5.4
PLATING OF NICKEL-ALUMINA NANOCOMPOSITE COATING 152 5.5 EFFECTS OF
PARTICIPATION OF ALUMINA NANOPARTICLE IN NICKEL COATING 153
5.6 PLATING OF NICKEL-ALUMINA NANOCOMPOSITE COATING 153 5.7 SIZE EFFECT
IN MECHANICAL PROPERTIES OF TWO DIMENSIONAL NANO-FILMS 154
5.8 STUDYING EFFECTIVE FACTORS ON SIMULTANEOUS DEPOSITION OF ALUMINA
NANOPARTICLES WITH NICKEL 162
5.8.1 EFFECT OF DENSITY OF ALUMINA NANOPARTICLES IN ELECTROLYTE BATH 162
5.8.2 EFFECT OF ELECTROPLATING CURRENT DENSITY 162
5.8.3 DISTRIBUTION OF ALUMINA NANOPARTICLES 164
5.8.4 EFFECT OF DENSITY OF NICKEL IONS IN PLATING BATH 166 5.8.5 EFFECT
OF PH 168
5.8.6 PULSE CURRENT EFFECT 169
5.9 SIZE DEPENDENCY OF TENSILE AND FATIGUE STRENGTH IN ULTRA-THIN FILMS
171
5.10 APPLICATION OF COATING FOR STRENGTH ENHANCEMENT 173 5.11
NANO-COATING USE IN DRESSING INDUSTRY 173
5.11.1 MAKING WC/CO-NI NANO-COATING USING ELECTRODEPOSITION 174
5.11.2 USING (ME-TI,_ X AL X N)/(A-SI 3 N 4 ) NANOCOMPOSITE COATINGS 174
5.12 SIZE DEPENDENCY IN NANOCOMPOSITE LAYERS 175
REFERENCES 179
6 SIZE EFFECT IN PHYSICAL AND OTHER PROPERTIES OF NANOSTRUCTURED
COATINGS 185
6.1 INTRODUCTION 185
6.2 SUICIDES SPECIFICATIONS 189
6.2.1 SALICIDE PROCESS 189
6.2.2 NECESSARY CONDITIONS FOR FORMATION OF SUICIDES 190
IMAGE 5
CONTENTS
6.2.3 TRANSITION FROM TISI 2 TO NISI 191
6.2.4 NISI SALICIDE TECHNOLOGY (SELF-ALIGNED NICKEL SUICIDE) 192
6.3 SIZE EFFECT IN SENSING CHARACTERIZATION 192
6.4 NISI THERMAL STABILITY 195
6.4.1 NISI TRANSITION TO NISI 2 IN DUAL NI-SI SYSTEM 195 6.4.2 PT EFFECT
IN INCREASING THERMAL STABILITY 195
6.4.3 PD EFFECT IN THERMAL STABILITY 198
6.4.4 GE EFFECT IN THERMAL STABILITY 199
6.4.5 CO AND IR EFFECTS IN THERMAL STABILITY 200
6.4.6 CAPSULATION AND NISI THERMAL STABILITY 200
6.5 SIZE EFFECT IN OPTICAL PROPERTIES OF NANOSTRUCTURED FILMS 201 6.6
OPTICAL COATINGS: USING ULTRAVIOLET LIGHT BLOCK LAYERS 208 6.7 SURFACE
IMPROVEMENT FOR MAKING FOG AND VAPOR RESISTANT LAYERS 209
6.8 PRODUCTION OF PIECES WITH NANO-COATING 209
6.9 SELF-CLEANING GLASSES 209
6.10 MEDICAL AND HYGIENIC APPLICATIONS 210
6.10.1 INORGANIC MATERIALS NANO-COATING FOR MEDICAL APPLICATIONS 210
6.10.2 USING NANO-PARTICLE MASKS 210
6.10.3 APPLICATION OF HYDROXYAPATITE NANO-COATING TO DESIGN PROSTHESIS
211
6.10.4 USING NANOCOMPOSITE COATING FOR FOOD PACKAGING . . 211 6.10.5
ANTIPOLLUTION MATERIALS IN SHIPPING INDUSTRY 212 6.10.6 NANO-COATING USE
AGAINST S ARS VIRUS 212
6.10.7 APPLICATION OF AG NANOPARTICLES AS ANTIBACTERIAL COATING 213
6.10.8 USING TIO 2 NANO-PARTICLES TO DECREASE ENVIRONMENTAL
CONTAMINATIONS 213
6.11 ELECTRICAL AND ELECTRONIC APPLICATIONS 213
6.11.1 PRODUCTION OF TRANSPARENT CONDUCTOR COATINGS BY CARBON NANO-TUBES
213
6.11.2 APPLICATION OF NANO-COATING ON SOLAR CELLS 214 6.11.3
NANO-COATING OF NICKEL PARTICLES BY OXIDES 215 6.11.4 USING POLARIZER
NANO-LAYERS TO PRODUCE LCD MONITORS 215
6.11.5 PRODUCE OF ELECTRICALLY CONDUCTIVE TRANSPARENCE NANO-COATINGS 215
6.11.6 INCREASE OF DATA STORING CAPACITY WITH MAGNETIC NANO-LAYERS 216
IMAGE 6
XII CONTENTS
6.12 LUBRICATING AND THE OTHER APPLICATIONS 216
6.13 AG-POLLUTED SNO 2 PARTICLES 216
6.14 DEVELOPMENT OF NANO-COATING FOR SURFACE LUBRICATION 216 6.15 SIZE
DEPENDENCY IN NANOCOMPOSITE LAYERS 217
REFERENCES 218
7 CONCLUSIONS 225
INDEX 245 |
any_adam_object | 1 |
author | Aliofkhazraei, Mahmood |
author_GND | (DE-588)1058846957 |
author_facet | Aliofkhazraei, Mahmood |
author_role | aut |
author_sort | Aliofkhazraei, Mahmood |
author_variant | m a ma |
building | Verbundindex |
bvnumber | BV037387448 |
classification_rvk | VE 9850 ZM 7090 |
ctrlnum | (OCoLC)742552021 (DE-599)DNB1008556041 |
dewey-full | 620.5 667.9 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations 667 - Cleaning, color & coating technologies |
dewey-raw | 620.5 667.9 |
dewey-search | 620.5 667.9 |
dewey-sort | 3620.5 |
dewey-tens | 620 - Engineering and allied operations 660 - Chemical engineering |
discipline | Chemie / Pharmazie Maschinenbau / Maschinenwesen Werkstoffwissenschaften / Fertigungstechnik |
format | Book |
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id | DE-604.BV037387448 |
illustrated | Illustrated |
indexdate | 2024-07-20T11:07:28Z |
institution | BVB |
isbn | 9783642179655 3642179657 |
language | English |
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owner_facet | DE-11 DE-92 DE-703 DE-634 |
physical | XII, 251 S. Ill., graph. Darst. |
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publisher | Springer |
record_format | marc |
series2 | Engineering materials |
spelling | Aliofkhazraei, Mahmood Verfasser (DE-588)1058846957 aut Nanocoatings size effect in nanostructured films Mahmood Aliofkhazraei Berlin [u.a.] Springer 2011 XII, 251 S. Ill., graph. Darst. txt rdacontent n rdamedia nc rdacarrier Engineering materials Nanostrukturiertes Material (DE-588)4342626-8 gnd rswk-swf Dünne Schicht (DE-588)4136925-7 gnd rswk-swf Nanostruktur (DE-588)4204530-7 gnd rswk-swf Size-Effekt (DE-588)4181611-0 gnd rswk-swf Nanostrukturiertes Material (DE-588)4342626-8 s Dünne Schicht (DE-588)4136925-7 s Size-Effekt (DE-588)4181611-0 s DE-604 Nanostruktur (DE-588)4204530-7 s 1\p DE-604 X:MVB text/html http://deposit.dnb.de/cgi-bin/dokserv?id=3616418&prov=M&dok_var=1&dok_ext=htm Inhaltstext DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022540421&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Aliofkhazraei, Mahmood Nanocoatings size effect in nanostructured films Nanostrukturiertes Material (DE-588)4342626-8 gnd Dünne Schicht (DE-588)4136925-7 gnd Nanostruktur (DE-588)4204530-7 gnd Size-Effekt (DE-588)4181611-0 gnd |
subject_GND | (DE-588)4342626-8 (DE-588)4136925-7 (DE-588)4204530-7 (DE-588)4181611-0 |
title | Nanocoatings size effect in nanostructured films |
title_auth | Nanocoatings size effect in nanostructured films |
title_exact_search | Nanocoatings size effect in nanostructured films |
title_full | Nanocoatings size effect in nanostructured films Mahmood Aliofkhazraei |
title_fullStr | Nanocoatings size effect in nanostructured films Mahmood Aliofkhazraei |
title_full_unstemmed | Nanocoatings size effect in nanostructured films Mahmood Aliofkhazraei |
title_short | Nanocoatings |
title_sort | nanocoatings size effect in nanostructured films |
title_sub | size effect in nanostructured films |
topic | Nanostrukturiertes Material (DE-588)4342626-8 gnd Dünne Schicht (DE-588)4136925-7 gnd Nanostruktur (DE-588)4204530-7 gnd Size-Effekt (DE-588)4181611-0 gnd |
topic_facet | Nanostrukturiertes Material Dünne Schicht Nanostruktur Size-Effekt |
url | http://deposit.dnb.de/cgi-bin/dokserv?id=3616418&prov=M&dok_var=1&dok_ext=htm http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=022540421&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT aliofkhazraeimahmood nanocoatingssizeeffectinnanostructuredfilms |