Encapsulated corrosion inhibitors for eco-benign smart coatings
Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Preface -- About the Editors -- List of Contributors -- 1 An Overview of Corrosion and Smart Healing Coatings -- 1.1 Introduction -- 1.2 Corrosion Cost -- 1.2.1 Importance of Corrosion Studies -- 1.3 Corrosion Prevention --...
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Format: | UnknownFormat |
Sprache: | eng |
Veröffentlicht: |
Boca Raton, London, New York
CRC Press
2025
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Ausgabe: | First edition |
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Zusammenfassung: | Cover -- Half Title -- Title Page -- Copyright Page -- Table of Contents -- Preface -- About the Editors -- List of Contributors -- 1 An Overview of Corrosion and Smart Healing Coatings -- 1.1 Introduction -- 1.2 Corrosion Cost -- 1.2.1 Importance of Corrosion Studies -- 1.3 Corrosion Prevention -- 1.3.1 Protective Coatings -- 1.3.1.1 Metal Coating -- 1.3.1.2 Inorganic Coating -- 1.3.1.3 Cathodic Coating -- 1.3.1.4 Physical Barrier Coatings -- 1.3.1.5 Metal-Based Coatings -- 1.3.1.6 Metal Hydroxides and Hydrotalcite Coatings -- 1.3.1.7 Metal Oxide Coatings -- 1.3.1.8 Silane Sol-Gel Coatings -- 1.3.1.9 Polymer Coatings -- 1.3.1.10 Smart Self-Healing Coatings -- 1.3.1.11 Other Coatings -- 1.4 Principles -- 1.4.1 Micro/Nanocapsules Synthesis -- 1.4.2 Approval of Self-Healing Ability -- 1.4.3 Micro/Nanocapsule Embedment Disadvantages and Limitations -- 1.5 Conclusion -- 2 Capsule Synthesis and Fabrication for Encapsulation of Corrosion Inhibitors -- 2.1 Introduction -- 2.2 Role and Characteristics of Smart Release Systems -- 2.2.1 Nanocontainers: Factors and Classification -- 2.2.2 Types of Loaded Inhibitors -- 2.3 Different Methods for Capsule Synthesis -- 2.3.1 Interfacial Polymerization: Oil in Water (O/W) -- 2.3.2 Complex Coacervation -- 2.3.3 Sol-Gel Methods -- 2.3.4 Electrospinning -- 2.3.5 Layer-By-Layer Methods -- 2.4 Microencapsulation -- 2.5 Applications of Capsule Synthesis for Corrosion Prevention -- 2.6 Encapsulation of Corrosion Inhibitors -- 2.6.1 Importance of Encapsulating Corrosion Inhibitors -- 2.6.2 Encapsulating for Corrosion Inhibitors -- 2.6.3 Mechanism of Loading and Unloading Corrosion Inhibitors -- 2.6.4 Industrial Applications of Encapsulation On Corrosion Inhibition -- 2.7 Conclusion -- 3 Encapsulation of Metal/Metal Oxide Nanoparticles as Corrosion Inhibitors -- 3.1 Introduction. "This book covers all the recent advancements and technologies developed for encapsulated corrosion inhibitors-based coatings as corrosion inhibitors by using eco-benign and sustainable encapsulated smart coatings based on self-healing functionality. It includes overview, properties, applicability, methodologies to detect corrosion and recent developments made in the field to study the inhibition potential of encapsulated corrosion inhibitors for eco-benign smart coatings in several corrosive systems. It covers encapsulation of the corrosion inhibitor which explores the self-healing mechanism of the smart coatings and includes encapsulated corrosion inhibitor fabrication, synthesis, modeling, functionalization, classification, characteristics, and so forth. It also reviews effectiveness and significant constraints of scaleup engineering. It discusses the fundamental characteristics of industrial-scale application research for encapsulated corrosion inhibitors and explores entire aspects of encapsulated corrosion inhibitors based sustainable smart coatings in one place. This book is aimed at researchers and graduate students in corrosion, surface engineering, and chemistry"-- |
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Beschreibung: | Literaturangaben |
Beschreibung: | xiv, 364 Seiten Illustrationen, Diagramme |
ISBN: | 9781032534770 978-1-032-53477-0 9781032677231 978-1-032-67723-1 |