2018
DOI: 10.1016/j.corsci.2017.11.022
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Processable poly(2-butylaniline)/hexagonal boron nitride nanohybrids for synergetic anticorrosive reinforcement of epoxy coating

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Cited by 156 publications
(55 citation statements)
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“…In addition to the consistency between our DFT Fe Pourbaix diagrams and various electrochemical/geological observations, the knowledge gained from our DFT diagrams can also help correctly understand the oxide formation on Fe samples with corrosion-resistant polymer coatings. 81,82 The Bragg peaks observed in the XRD patterns on such corroded samples were ascribed to the Fe substrate, Fe 2 O 3 , and FeOOH; 82 however, our analysis indicates that Fe 3 O 4 should form as the stable oxide under electrochemical conditions. To assess the interpretation in refs.…”
Section: Fe Pourbaix Diagramsmentioning
confidence: 66%
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“…In addition to the consistency between our DFT Fe Pourbaix diagrams and various electrochemical/geological observations, the knowledge gained from our DFT diagrams can also help correctly understand the oxide formation on Fe samples with corrosion-resistant polymer coatings. 81,82 The Bragg peaks observed in the XRD patterns on such corroded samples were ascribed to the Fe substrate, Fe 2 O 3 , and FeOOH; 82 however, our analysis indicates that Fe 3 O 4 should form as the stable oxide under electrochemical conditions. To assess the interpretation in refs.…”
Section: Fe Pourbaix Diagramsmentioning
confidence: 66%
“…To assess the interpretation in refs. 81,82 , we examined the XRD patterns for standard Fe, Fe 2 O 3 , Fe 3 O 4 , and FeOOH samples [83][84][85] in detail and found that for the corroded Fe samples with polymer coatings, 82 the XRD peaks, can be ascribed solely to Fe and Fe 3 O 4 . When the polymer composition changes, 81 however, XRD peaks consistent with the formation of FeOOH appear.…”
Section: Fe Pourbaix Diagramsmentioning
confidence: 99%
“…Among them, the placement of anticorrosive coatings on metallic surfaces seems to be a well‐established strategy for separating metals from external aggressive environments . For this purpose, ceramic coatings, metallic oxide coatings, graphene coatings, organic coatings and organic–inorganic hybrid coatings have been developed. Because organic coatings have many advantages, including a high efficiency and easy operation, they have emerged as a promising anticorrosive protection material for metallic surfaces .…”
Section: Introductionmentioning
confidence: 99%
“…In the case of epoxy coatings applied on steel, a recent paper has reported delamination also to occur during the same kind of immersion tests leading to a decrease of corrosion resistance for long times of immersion, reducing the durability of the coating [12,13]. Addition of well dispersed h-BN nanoplatelets in small concentrations -0.5 to 1wt% -in the epoxy matrix appeared to strongly increase the corrosion resistance of the composite making the coating durable.…”
Section: Introductionmentioning
confidence: 98%