Corrosion Protection of Metals and Alloys Using Graphene and Biopolymer Based Nanocomposites

Corrosion Protection of Metals and Alloys Using Graphene and Biopolymer Based Nanocomposites

Galal, Ahmed; Amin, Hatem M.A.

Taylor & Francis Ltd

09/2022

216

Mole

Inglês

9780367642570

15 a 20 dias

410

Descrição não disponível.
CORROSION PROTECTION BY NATURAL/BIOPOLYMER COATINGS. Corrosion: Introduction. Biopolymer Composites and Nanocomposites for Corrosion Protection of Industrial Metal Substrates. Development of Green Vapor Phase Corrosion Inhibitors. Plant-Based Green Corrosion Inhibition: Need and Applications. Corrosion Protection Using Organic and Natural Polymeric Inhibitors. CORROSION PROTECTION USING GRAPHENE AND OTHER SMART COATINGS. Carbon Nanoallotropes-Based Anticorrosive Coatings: Recent Advances and Future Perspectives. Analytical Techniques for Corrosion-Related Characterization of Graphene and Graphene-Based Nanocomposites Coatings. Metal-Graphene Nanocomposites with Improved Mechanical and Anti-Corrosion Properties. An Overview of the Effect of Graphene as a Metal Protector Against Microbiologically Influenced Corrosion (MIC). Advanced Micro/Nanocapsules for Self-healing Smart Anticorrosion Coatings: A Review of New Developments. Plasma Electrolytic Oxidation: Anticorrosive and Biocompatible Coatings.
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Corrosion Inhibition;Inhibition Efficiency;anticorrosive biopolymers;Go;Graphene nanocomposite;Corrosive Medium;Crack-free coatings;PEO Coating;Green corrosion inhibitors;Corrosion Protection;Metal-graphene nanocomposites;RGO;Solid metal alloy;Corrosion Protection Efficiency;Biopolymer composites;Graphene Nanosheets;Epoxy Coatings;PEO Process;EIS Measurement;GPE;Corrosion Resistance;Nano Composite Coatings;Mic;PEO Treatment;Self-healing Coatings;PEO;Corrosion Inhibition Efficiency;Composite Coatings;Mesoporous Silica;CDs