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2025 Zhao Porous Silica Corrosion Inhibitor Coatings

Jingjing Zhao, Dong Hyuk Na

2026encorrosion inhibitorssilica microparticlessurface modificationdiatomaceous earthprotective coatingscontrolled release

Abstract

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Recent works have shown the potential of diatomaceous earth (DE) as an efficient and environmentally friendly storage system for active chemicals such as corrosion inhibitors in coatings. The storage of organic inhibitors is nevertheless challenging. To address this challenge, in this work, we study the effect of surface modification of DE particles on the loading and release of organic corrosion inhibitors in solution and from coatings. To this aim, three trichlorosilanes with varying alkyl chain lengths (C4, C8, C18) were used to modify the surface of sp.Aulacoseira-type diatomite (DE). 2,5-Dimercapto-1,3,4-thiadiazolate di-potassium salts (KDMTD) were selected as a model corrosion inhibitor for its high solubility and effectiveness in protecting Cu-rich aerospace alloy surfaces affected via aqueous solution chemistry and temperature.

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Cite This Work

@article{2204b987-e16c-4d9e-9fc4-81f90beed81a,
  title={2025 Zhao Porous Silica Corrosion Inhibitor Coatings},
  author={Jingjing Zhao and Dong Hyuk Na},
  year={2026},
  language={en}
}
TY  - JOUR
TI  - 2025 Zhao Porous Silica Corrosion Inhibitor Coatings
AU  - Jingjing Zhao
AU  - Dong Hyuk Na
PY  - 2026
LA  - en
ER  -

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