Plasma applications in gases, liquids and solids: technology and methods
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Weitere Verfasser: | , |
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Format: | Buch |
Sprache: | English |
Veröffentlicht: |
New Jersey ; London ; Singapore ; Beijing ; Shanghai ; Hong Kong ; Taipei ; Chennai ; Tokyo
World Scientific
[2023]
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Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | xviii, 277 Seiten Diagramme, Illustrationen |
ISBN: | 9789811275920 |
Internformat
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Datensatz im Suchindex
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© 2023 World Scientific Publishing Company https://doi.org/10.1142/97S9811275937-fmatter Contents Preface v Acknowledgments ix Contributors xi Chapter 1 Non-equilibrium Plasmas in Gases at Atmospheric Pressure 1 Luca Matteo Martini, Giorgio Dilecce and Paolo Tosi 1 2 3 4 Introduction. Equilibrium Chemistry: APrimer. 2.1 Why do chemical reactionsoccur?. 2.2 How quickly does a reaction mixture approach equilibrium?. 2.3 Energy threshold and barrier: Transition state theory . 2.4 Thermodynamics vs kinetic control of chemical reactions . 2.5 Chemistry of vibrationally excited molecules. 2.6 Ionic chemistry. Non-equilibrium Features of Gas Discharges. 3.1 The electron component. 3.2 Molecular vibrations. 3.3 Transient reaction intermediates. 3.4 High pressure. Non-equilibrium Plasma for CO2 Conversion. 4.1 Macroscopic evaluation of plasma mediated conversion
processes. 4.2 Local characterization of plasma-mediated processes . 3 4 4 5 7 9 9 10 12 14 19 24 24 25 25 33
Plasma Applications in Gases, Liquids and Solids xvj 5 Conclusions. References. Chapter 2 Plasma Processes for the Surface Engineering of Polymers 45 46 57 Fabio Palumbo, Fiorenza Fanelli, Antonella Milella, Pietro Favia and Francesco Fracassi 1 2 Introduction. 58 Plasma-Enhanced Chemical Vapor Deposition of Polymers . 61 2.1 Low-pressure PECVD of fluorocarbon films. 61 2.2 Atmospheric pressure PECVD of fluorocarbon films . 66 2.3 Low-pressure PECVD of organosilicon films. 69 2.4 Atmospheric pressure PECVD of organosilicon films . . 76 2.5 Low-pressure PECVD of nanocomposite films. 79 2.6 Atmospheric pressure cold plasma deposition of nanocomposite thin films. 82 3 Plasma Treatment of Polymers . 90 3.1 Low pressure plasma treatment of polymers. 90 3.2 Atmospheric pressure plasma treatments. 94 4 Plasma Etching of Polymers. 96 References. 101 Chapter 3 The Methods of Streamer Formation in/on Dielectric and Conductive Liquids 121 Yuri Akishev 1 2 3 4 5 6 7
Introduction. 123 Plasma-Liquid Systems for Generation of Streamers Above the Liquids. 131 Efficiency of the Reactive Species Transfer into a Liquid in Different Plasma-Liquid Systems. 133 Increase of the Reactive Species Transfer into a Liquid by its Mechanical Agitation. 136 Interaction of Streamers with Foam of Water Bubbles Filled with Air. 139 Interaction of an Isolated Positive Streamer with a Single Water Bubble Floating on Water. 143 Positive Streamer Interaction with an Isolated Oil Bubble Floating on Oil. 146
Contents Dynamics of the Water and Oil Bubble Destruction by Positive Streamers. 148 9 Possible Mechanism of Bubble Erosion by a Streamer. 10 Numerical Calculations of the Surface Streamer Propagation on Bubbles . 11 Composition of Active Plasma Species Generated by a Surface Streamer on a Water Bubble. 155 12 Plasma-Liquid Systems for Generation of Streamers in/on the Liquids. 156 13 Transient Discharges with Bubble Formation at a HV Metallic Electrode. 158 14 Transient Discharges with Bubble Formation in/at Narrow Hole(s) in a Dielectric Barrier. 165 15 DC Diaphragm Discharge in Capillary Tube Between Two Separated Volumes of Liquid. 167 16 Transient Discharges with Bubble(s) Inserted into a Liquid in Advance. 168 17 Streamer Behavior in a Single Bubble in Capillary Tube Filled with an Aqueous Solution. 170 18 Streamers Behavior in Two Bubbles in Capillary Tube Filled with an Aqueous Solution. 178 19 Slow-Developing Streamer
Discharges on Liquids . 20 Spatial Memory of Surface Streamers Periodically Generated on Water. 191 21 Conclusions. References. xvii 8 Chapter 4 151 152 182 193 193 Plasmas as Sources of Nanostructured Materials: Plasma-Assisted Supersonic-Jet Deposition 201 S. Caldirola, H.E. Roman and C. Riccardi 1 2 3 Introduction. 203 Synthesis of Hierarchically Mesoporous Materials: State of the Art. 205 2.1 Nanomaterials and architectures. 206 2.2 Environment. 209 2.3 Biomedicine: Hydrogels and proteins. 212 The Plasma-Assisted Supersonic-Jet Deposition Technique . . . 214 3.1 Experimental set-up. 214
xviii Plasma Applications in Gases, Liquids and Solids 3.2 Plasma chamber: ICP and precursor . 217 3.3 Diagnostics: Measurement devices. 219 4 Plasma Chamber: Precursor-TiOs Nanoparticles . 227 4.1 Optical emission spectra from plasmas. 228 4.2 Precursor dissociation and nanoparticle mass spectra . . . 229 5 Deposition Chamber: Theory of Supersonic Jets. 230 5.1 Supersonic jet for a single gas component. 233 5.2 Supersonic jet for a gas mixture. 234 6 Hierarchical Deposition of TiO2. 234 6.1 Nanoparticle flux and pressure ratio effects on morphology. 235 6.2 Film width vs precursor temperature and rate of deposition. 237 6.3 Fractal growth of TiO2 films near a staircase-like substrate. 238 6.4 Deposition of TiO2 films using PASJD technique. 239 6.5 Effects of flat and rough substrates on TiO2 films. 243 7 Experimental Results and Modeling of Ar Plasma Jets. 246 7.1 Neutral gas species in the deposition chamber. 246 7.2 Charged Ar+ gas expansion. 248 7.3 Modeling of Ar+plasma
jets. 251 7.4 Summary and conclusions. 263 References. 264 Index 273 |
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spelling | Plasma applications in gases, liquids and solids technology and methods edited by Claudia Riccardi, H Eduardo Roman, University of Milano-Bicocca, Italy Plasma applications New Jersey ; London ; Singapore ; Beijing ; Shanghai ; Hong Kong ; Taipei ; Chennai ; Tokyo World Scientific [2023] xviii, 277 Seiten Diagramme, Illustrationen txt rdacontent n rdamedia nc rdacarrier Plasmatechnik (DE-588)4140353-8 gnd rswk-swf Plasmaphysik (DE-588)4046259-6 gnd rswk-swf Plasmaphysik (DE-588)4046259-6 s DE-604 Plasmatechnik (DE-588)4140353-8 s Riccardi, Claudia (DE-588)132995825X edt Roman, H. Eduardo (DE-588)1329958268 edt Erscheint auch als Online-Ausgabe (ebook for institutions) 978-981-12-7593-7 Erscheint auch als Online-Ausgabe (ebook for individuals) 978-981-12-7594-4 Digitalisierung UB Bayreuth - ADAM Catalogue Enrichment application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035042742&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Plasma applications in gases, liquids and solids technology and methods Plasmatechnik (DE-588)4140353-8 gnd Plasmaphysik (DE-588)4046259-6 gnd |
subject_GND | (DE-588)4140353-8 (DE-588)4046259-6 |
title | Plasma applications in gases, liquids and solids technology and methods |
title_alt | Plasma applications |
title_auth | Plasma applications in gases, liquids and solids technology and methods |
title_exact_search | Plasma applications in gases, liquids and solids technology and methods |
title_full | Plasma applications in gases, liquids and solids technology and methods edited by Claudia Riccardi, H Eduardo Roman, University of Milano-Bicocca, Italy |
title_fullStr | Plasma applications in gases, liquids and solids technology and methods edited by Claudia Riccardi, H Eduardo Roman, University of Milano-Bicocca, Italy |
title_full_unstemmed | Plasma applications in gases, liquids and solids technology and methods edited by Claudia Riccardi, H Eduardo Roman, University of Milano-Bicocca, Italy |
title_short | Plasma applications in gases, liquids and solids |
title_sort | plasma applications in gases liquids and solids technology and methods |
title_sub | technology and methods |
topic | Plasmatechnik (DE-588)4140353-8 gnd Plasmaphysik (DE-588)4046259-6 gnd |
topic_facet | Plasmatechnik Plasmaphysik |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=035042742&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
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