Matches in SemOpenAlex for { <https://semopenalex.org/work/W4313367424> ?p ?o ?g. }
- W4313367424 endingPage "107381" @default.
- W4313367424 startingPage "107381" @default.
- W4313367424 abstract "The introduction of stimuli-responsive micron-nano containers endows traditional coatings with intelligent self-healing functions. Recently, the research on stimuli-responsive micron-nano containers has attracted much attention in the field of self-healing anticorrosion coatings. In this article, the stimuli-responsive micron-nano containers were classified into three categories: spherical, tubular, and lamellar, according to the structural morphology. Spherical micron-nano containers were subdivided into core-shell microcapsules (ordinary polymer-based microcapsules, chemically modified microcapsules) and mesoporous oxidation nanoparticles (honeycomb-like ordered hexagonal pore structure, dendrimer-like mesoporous, random mesoporous and hollow mesoporous oxidation nanoparticles). Tubular micron-nano containers were subdivided into vacuum adsorption containers (physical adsorption direct loading, material isoelectric point adsorption) and chemical modified containers (surface packaging, terminal packaging) after vacuum physical adsorption. The active-passive synergy lamellar containers were divided into noncovalent loading and ion exchange micron-nano containers. The advantages and disadvantages of the micron-nano containers with different structural morphology were compared and summarized. According to these three categories, the relationship between the structural morphology of each kind of container and the stimulus-response was further reviewed. More importantly, the effects of their bearing capacity and ability to control response release on the compatibility and self-healing anti-corrosion properties of coatings are reviewed from the perspective of structural morphology. At the same time, the effects of stimulus-response micron-nano containers on other properties of anti-corrosion coatings were compared and summarized. The research progress of embedded self-healing anticorrosive coatings for corrosion inhibitors-based micron-nano containers in recent decades was reviewed, and the future development of this field has prospected." @default.
- W4313367424 created "2023-01-06" @default.
- W4313367424 creator A5024656883 @default.
- W4313367424 creator A5053275663 @default.
- W4313367424 creator A5071333144 @default.
- W4313367424 date "2023-02-01" @default.
- W4313367424 modified "2023-10-15" @default.
- W4313367424 title "Self-healing anti-corrosion coatings based on micron-nano containers with different structural morphologies" @default.
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