Advances in nanotechnology, Volume 4:
Gespeichert in:
Format: | Elektronisch E-Book |
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Sprache: | English |
Veröffentlicht: |
New York
Nova Science
©2010
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Schriftenreihe: | Advances in Nanotechnology
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Schlagworte: | |
Online-Zugang: | FAW01 FAW02 |
Beschreibung: | Includes bibliographical references and index ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""CONTENTS ""; ""PREFACE ""; "" ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION ""; ""ABSTRACT""; ""1. INTRODUCTION""; ""1. A. Properties and Applications of Zinc Oxide and its Nanostructures ""; ""1. B. Growth Techniques for Zinc Oxide Nanostructures ""; ""2. ZINC OXIDE NANOSTRUCTURES BY LASER ABLATION ""; ""2. A. The Pulsed Laser Deposition Technique ""; ""2. B. Nanostructured Zinc Oxide by PLD in the World ""; ""3. OUR RESULTS ""; ""3. A. Experimental PLD Set-up and Deposition Parameters "" ""3. B. Morphology""""3. C. Summary of other Characterizations ""; ""3. D. Gas Sensing Tests ""; ""4. CONCLUSION ""; ""ACKNOWLEDGMENTS ""; ""REFERENCES ""; ""MODELING EFECTIVECARBON NANOTUBES BY MOLECULAR MECHANICS""; ""ABSTRACT""; ""INTRODUCTION""; ""UP TO DATE RESEARCH ""; ""MOLECULAR MECHANICS AND MATHEMATICAL MODELING""; ""DATA ANALYSIS AND DISCUSSIONS ""; ""CLOSING COMMENTS""; ""ACKNOWLEDGMENTS""; ""REFERENCES""; ""GAS ADSORPTION SENSORS BASED ON HYBRID CARBON NANOTUBES ""; ""1. GENERAL INTRODUCTION ""; ""THEORETICAL BACKGROUND ""; ""GASES / VAPORS OF INTEREST "" ""2. PRINCIPLE OF OPERATION """"2.1. Physical Principles ""; ""2.2. Complex Impedance Measurement Principles ""; ""3. EXPERIMENTAL ""; ""3.1. Sensor Device Fabrication Process ""; ""3.1.1 Substrate Preparation ""; ""3.1.2. Drop Cast Film Process ""; ""3.2. Test System Setup ""; ""3.2.1. Test Chambers""; ""3.2.2. Pneumatic System ""; ""3.2.3. Supporting Equipment ""; ""3.3. Sensor Testing Process ""; ""4. RESULTS ""; ""4.1. No2 Studies""; ""4.1.1. Sensitivity To NO2 ""; ""4.1.2. Response Time to NO2 ""; ""4.1.2.1. Response to NO2 in Air "" ""4.1.2.2. Response to Additions of 1 Ppm NO2 in Air """"4.1.2.3. Response to Increasing NO2 in Air ""; ""4.2. Ethanol Studies ""; ""4.3.H2Studies""; ""4.4. Co2 Studies""; ""4.5. O2 Studies ""; ""5. DISCUSSION ""; ""5.1. Sensitivity ""; ""5.2. Selectivity ""; ""5.3. Hysteresis ""; ""6. CONCLUSIONS""; ""7. SUMMARY ""; ""ZNO NANO-STRUCTURES FOR BIOSENSING APPLICATIONS: MOLECULAR DYNAMICS SIMULATIONS ""; ""ABSTRACT""; ""1. INTRODUCTION ""; ""2. CASES STUDY""; ""2.1. ZnO Hexagonal Polar Surfaces Slab-Water Interaction (Wetting and Electrowetting) "" ""2.2. ZnO Nanorods or Tubes Array-Water Interaction (Wetting and Electrowetting) """"2.3. Water Permeation through ZnO Nanotube ""; ""2.4. Ionic Currents of Mg2+, Ca2+, K+, and Na+ Ions Through ZnO Nanotube ""; ""3. METHOD ""; ""3.1. Molecular Dynamics ""; ""3.2. BUILDING ZnO STRUCTURES ""; ""3.2.1. ZnO HEXAGONAL POLAR SLAB""; ""3.2.2. ZnO NANORODS ""; ""3.2.3. ZnO NANOTUBE ""; ""3.3. ZnO- WATER SYSTEMS""; ""3.3.1. Wetting ""; ""3.3.2. Electrowetting ""; ""3.3.3. Water Permeation ""; ""3.3.4. Ionic Currents""; ""3.4. Water Density Profiles ""; ""4. RESULTS AND DISCUSSION "" |
Beschreibung: | xiii, 284 pages |
ISBN: | 9781616685201 1616685204 9781616686185 1616686189 |
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245 | 1 | 0 | |a Advances in nanotechnology, Volume 4 |c Zacharie Bartul and Jérôme Trenor, editors |
264 | 1 | |a New York |b Nova Science |c ©2010 | |
300 | |a xiii, 284 pages | ||
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337 | |b c |2 rdamedia | ||
338 | |b cr |2 rdacarrier | ||
490 | 0 | |a Advances in Nanotechnology | |
500 | |a Includes bibliographical references and index | ||
500 | |a ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""CONTENTS ""; ""PREFACE ""; "" ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION ""; ""ABSTRACT""; ""1. INTRODUCTION""; ""1. A. Properties and Applications of Zinc Oxide and its Nanostructures ""; ""1. B. Growth Techniques for Zinc Oxide Nanostructures ""; ""2. ZINC OXIDE NANOSTRUCTURES BY LASER ABLATION ""; ""2. A. The Pulsed Laser Deposition Technique ""; ""2. B. Nanostructured Zinc Oxide by PLD in the World ""; ""3. OUR RESULTS ""; ""3. A. Experimental PLD Set-up and Deposition Parameters "" | ||
500 | |a ""3. B. Morphology""""3. C. Summary of other Characterizations ""; ""3. D. Gas Sensing Tests ""; ""4. CONCLUSION ""; ""ACKNOWLEDGMENTS ""; ""REFERENCES ""; ""MODELING EFECTIVECARBON NANOTUBES BY MOLECULAR MECHANICS""; ""ABSTRACT""; ""INTRODUCTION""; ""UP TO DATE RESEARCH ""; ""MOLECULAR MECHANICS AND MATHEMATICAL MODELING""; ""DATA ANALYSIS AND DISCUSSIONS ""; ""CLOSING COMMENTS""; ""ACKNOWLEDGMENTS""; ""REFERENCES""; ""GAS ADSORPTION SENSORS BASED ON HYBRID CARBON NANOTUBES ""; ""1. GENERAL INTRODUCTION ""; ""THEORETICAL BACKGROUND ""; ""GASES / VAPORS OF INTEREST "" | ||
500 | |a ""2. PRINCIPLE OF OPERATION """"2.1. Physical Principles ""; ""2.2. Complex Impedance Measurement Principles ""; ""3. EXPERIMENTAL ""; ""3.1. Sensor Device Fabrication Process ""; ""3.1.1 Substrate Preparation ""; ""3.1.2. Drop Cast Film Process ""; ""3.2. Test System Setup ""; ""3.2.1. Test Chambers""; ""3.2.2. Pneumatic System ""; ""3.2.3. Supporting Equipment ""; ""3.3. Sensor Testing Process ""; ""4. RESULTS ""; ""4.1. No2 Studies""; ""4.1.1. Sensitivity To NO2 ""; ""4.1.2. Response Time to NO2 ""; ""4.1.2.1. Response to NO2 in Air "" | ||
500 | |a ""4.1.2.2. Response to Additions of 1 Ppm NO2 in Air """"4.1.2.3. Response to Increasing NO2 in Air ""; ""4.2. Ethanol Studies ""; ""4.3.H2Studies""; ""4.4. Co2 Studies""; ""4.5. O2 Studies ""; ""5. DISCUSSION ""; ""5.1. Sensitivity ""; ""5.2. Selectivity ""; ""5.3. Hysteresis ""; ""6. CONCLUSIONS""; ""7. SUMMARY ""; ""ZNO NANO-STRUCTURES FOR BIOSENSING APPLICATIONS: MOLECULAR DYNAMICS SIMULATIONS ""; ""ABSTRACT""; ""1. INTRODUCTION ""; ""2. CASES STUDY""; ""2.1. ZnO Hexagonal Polar Surfaces Slab-Water Interaction (Wetting and Electrowetting) "" | ||
500 | |a ""2.2. ZnO Nanorods or Tubes Array-Water Interaction (Wetting and Electrowetting) """"2.3. Water Permeation through ZnO Nanotube ""; ""2.4. Ionic Currents of Mg2+, Ca2+, K+, and Na+ Ions Through ZnO Nanotube ""; ""3. METHOD ""; ""3.1. Molecular Dynamics ""; ""3.2. BUILDING ZnO STRUCTURES ""; ""3.2.1. ZnO HEXAGONAL POLAR SLAB""; ""3.2.2. ZnO NANORODS ""; ""3.2.3. ZnO NANOTUBE ""; ""3.3. ZnO- WATER SYSTEMS""; ""3.3.1. Wetting ""; ""3.3.2. Electrowetting ""; ""3.3.3. Water Permeation ""; ""3.3.4. Ionic Currents""; ""3.4. Water Density Profiles ""; ""4. RESULTS AND DISCUSSION "" | ||
650 | 4 | |a Nanoscience | |
650 | 4 | |a Nanotechnology | |
650 | 7 | |a TECHNOLOGY & ENGINEERING / Engineering (General) |2 bisacsh | |
650 | 7 | |a Nanotechnology |2 fast | |
650 | 4 | |a Nanotechnology | |
700 | 1 | |a Bartul, Zacharie |e Sonstige |4 oth | |
700 | 1 | |a Trenor, Jérôme |e Sonstige |4 oth | |
912 | |a ZDB-4-EBA | ||
999 | |a oai:aleph.bib-bvb.de:BVB01-029369738 | ||
966 | e | |u http://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=346080 |l FAW01 |p ZDB-4-EBA |q FAW_PDA_EBA |x Aggregator |3 Volltext | |
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dewey-full | 620.5 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 620 - Engineering and allied operations |
dewey-raw | 620.5 |
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illustrated | Not Illustrated |
indexdate | 2024-07-10T07:39:49Z |
institution | BVB |
isbn | 9781616685201 1616685204 9781616686185 1616686189 |
language | English |
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physical | xiii, 284 pages |
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publishDate | 2010 |
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publisher | Nova Science |
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series2 | Advances in Nanotechnology |
spelling | Advances in nanotechnology, Volume 4 Zacharie Bartul and Jérôme Trenor, editors New York Nova Science ©2010 xiii, 284 pages txt rdacontent c rdamedia cr rdacarrier Advances in Nanotechnology Includes bibliographical references and index ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""ADVANCES IN NANOTECHNOLOGY. VOLUME 4 ""; ""CONTENTS ""; ""PREFACE ""; "" ZNO NANOSTRUCTURES DEPOSITED BY LASER ABLATION ""; ""ABSTRACT""; ""1. INTRODUCTION""; ""1. A. Properties and Applications of Zinc Oxide and its Nanostructures ""; ""1. B. Growth Techniques for Zinc Oxide Nanostructures ""; ""2. ZINC OXIDE NANOSTRUCTURES BY LASER ABLATION ""; ""2. A. The Pulsed Laser Deposition Technique ""; ""2. B. Nanostructured Zinc Oxide by PLD in the World ""; ""3. OUR RESULTS ""; ""3. A. Experimental PLD Set-up and Deposition Parameters "" ""3. B. Morphology""""3. C. Summary of other Characterizations ""; ""3. D. Gas Sensing Tests ""; ""4. CONCLUSION ""; ""ACKNOWLEDGMENTS ""; ""REFERENCES ""; ""MODELING EFECTIVECARBON NANOTUBES BY MOLECULAR MECHANICS""; ""ABSTRACT""; ""INTRODUCTION""; ""UP TO DATE RESEARCH ""; ""MOLECULAR MECHANICS AND MATHEMATICAL MODELING""; ""DATA ANALYSIS AND DISCUSSIONS ""; ""CLOSING COMMENTS""; ""ACKNOWLEDGMENTS""; ""REFERENCES""; ""GAS ADSORPTION SENSORS BASED ON HYBRID CARBON NANOTUBES ""; ""1. GENERAL INTRODUCTION ""; ""THEORETICAL BACKGROUND ""; ""GASES / VAPORS OF INTEREST "" ""2. PRINCIPLE OF OPERATION """"2.1. Physical Principles ""; ""2.2. Complex Impedance Measurement Principles ""; ""3. EXPERIMENTAL ""; ""3.1. Sensor Device Fabrication Process ""; ""3.1.1 Substrate Preparation ""; ""3.1.2. Drop Cast Film Process ""; ""3.2. Test System Setup ""; ""3.2.1. Test Chambers""; ""3.2.2. Pneumatic System ""; ""3.2.3. Supporting Equipment ""; ""3.3. Sensor Testing Process ""; ""4. RESULTS ""; ""4.1. No2 Studies""; ""4.1.1. Sensitivity To NO2 ""; ""4.1.2. Response Time to NO2 ""; ""4.1.2.1. Response to NO2 in Air "" ""4.1.2.2. Response to Additions of 1 Ppm NO2 in Air """"4.1.2.3. Response to Increasing NO2 in Air ""; ""4.2. Ethanol Studies ""; ""4.3.H2Studies""; ""4.4. Co2 Studies""; ""4.5. O2 Studies ""; ""5. DISCUSSION ""; ""5.1. Sensitivity ""; ""5.2. Selectivity ""; ""5.3. Hysteresis ""; ""6. CONCLUSIONS""; ""7. SUMMARY ""; ""ZNO NANO-STRUCTURES FOR BIOSENSING APPLICATIONS: MOLECULAR DYNAMICS SIMULATIONS ""; ""ABSTRACT""; ""1. INTRODUCTION ""; ""2. CASES STUDY""; ""2.1. ZnO Hexagonal Polar Surfaces Slab-Water Interaction (Wetting and Electrowetting) "" ""2.2. ZnO Nanorods or Tubes Array-Water Interaction (Wetting and Electrowetting) """"2.3. Water Permeation through ZnO Nanotube ""; ""2.4. Ionic Currents of Mg2+, Ca2+, K+, and Na+ Ions Through ZnO Nanotube ""; ""3. METHOD ""; ""3.1. Molecular Dynamics ""; ""3.2. BUILDING ZnO STRUCTURES ""; ""3.2.1. ZnO HEXAGONAL POLAR SLAB""; ""3.2.2. ZnO NANORODS ""; ""3.2.3. ZnO NANOTUBE ""; ""3.3. ZnO- WATER SYSTEMS""; ""3.3.1. Wetting ""; ""3.3.2. Electrowetting ""; ""3.3.3. Water Permeation ""; ""3.3.4. Ionic Currents""; ""3.4. Water Density Profiles ""; ""4. RESULTS AND DISCUSSION "" Nanoscience Nanotechnology TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Nanotechnology fast Bartul, Zacharie Sonstige oth Trenor, Jérôme Sonstige oth |
spellingShingle | Advances in nanotechnology, Volume 4 Nanoscience Nanotechnology TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Nanotechnology fast |
title | Advances in nanotechnology, Volume 4 |
title_auth | Advances in nanotechnology, Volume 4 |
title_exact_search | Advances in nanotechnology, Volume 4 |
title_full | Advances in nanotechnology, Volume 4 Zacharie Bartul and Jérôme Trenor, editors |
title_fullStr | Advances in nanotechnology, Volume 4 Zacharie Bartul and Jérôme Trenor, editors |
title_full_unstemmed | Advances in nanotechnology, Volume 4 Zacharie Bartul and Jérôme Trenor, editors |
title_short | Advances in nanotechnology, Volume 4 |
title_sort | advances in nanotechnology volume 4 |
topic | Nanoscience Nanotechnology TECHNOLOGY & ENGINEERING / Engineering (General) bisacsh Nanotechnology fast |
topic_facet | Nanoscience Nanotechnology TECHNOLOGY & ENGINEERING / Engineering (General) |
work_keys_str_mv | AT bartulzacharie advancesinnanotechnologyvolume4 AT trenorjerome advancesinnanotechnologyvolume4 |