Advances in Organic Corrosion Inhibitors and Protective Coatings

The interaction of metal with its environment that results in its chemical alteration is called metallic corrosion. According to the literature, corrosion is classified to two types: uniform and localized corrosion. Intervention in either in the alloy environment or in the alloy structure can provid...

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Bibliographic Details
Other Authors: Kartsonakis, Ioannis (Editor)
Format: Electronic Book Chapter
Language:English
Published: Basel, Switzerland MDPI - Multidisciplinary Digital Publishing Institute 2021
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DOAB: description of the publication
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520 |a The interaction of metal with its environment that results in its chemical alteration is called metallic corrosion. According to the literature, corrosion is classified to two types: uniform and localized corrosion. Intervention in either in the alloy environment or in the alloy structure can provide the corrosion protection of metallic materials. Furthermore, the interference in the metal alloy environment can be conducted with the utilization of cathodic or anodic protection via the corresponding inhibitors. Therefore, the most common categorization is cathodic, anodic, and mixed-type inhibitors, taking into account which half-reaction they suppress during corrosion phenomena. The majority of the organic inhibitors are of mixed type and perform through chemisorption. In order to update the field of the corrosion protection of metal and metal alloys with the use of organic inhibitors, a Special Issue entitled "Advances in Organic Corrosion Inhibitors and Protective Coatings" is introduced. This book gathers and reviews a collection of ten contributions (nine articles and one review), from authors from Europe, Asia, and Africa, that were accepted for publication in this Special Issue of Applied Sciences. 
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653 |a corrosion 
653 |a reinforcements 
653 |a concrete 
653 |a slag 
653 |a LFS 
653 |a grounding grid 
653 |a metal corrosion 
653 |a topology detection 
653 |a corrosion detection 
653 |a nondestructive testing 
653 |a coating 
653 |a metallic bipolar plate 
653 |a PEMFC 
653 |a TiNb 
653 |a TiNbN 
653 |a brass 
653 |a chloride 
653 |a triazole derivatives 
653 |a poly(phenylene methylene) coatings 
653 |a PPM-related copolymer 
653 |a rheological additive-free polymer formulation 
653 |a AA2024 
653 |a corrosion protection 
653 |a electrochemistry 
653 |a aluminum 7075 
653 |a anodizing 
653 |a oil-impregnation 
653 |a corrosion resistance 
653 |a salt spray test 
653 |a Cerium oxide nanoparticles 
653 |a anti-reflection 
653 |a self-assembly 
653 |a microfluidics 
653 |a convective self-assembly 
653 |a corrosion inhibitor 
653 |a corrosion mechanism 
653 |a cysteine 
653 |a thin film 
653 |a C-Mnsteel 
653 |a corrosion inhibitors 
653 |a bio-copolymer 
653 |a starch 
653 |a glycerin 
653 |a mild steel 
653 |a EIS 
653 |a SEM 
653 |a Raman spectroscopy 
653 |a pitting corrosion 
653 |a synergistic effect 
653 |a n/a 
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