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Anti-corrosive and UV-resistant three-dimensional epoxy coating based on reduced graphene oxide, modified carbon nanotubes, modified fullerene, and 2-(2′-hydroxy-5′-methylphenyl) benzotriazole for polycarbonate/acrylonitrile-styrene-acrylic
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Anti-corrosive and UV-resistant three-dimensional epoxy coating based on reduced graphene oxide, modified carbon nanotubes, modified fullerene, and 2-(2′-hydroxy-5′-methylphenyl) benzotriazole for polycarbonate/acrylonitrile-styrene-acrylic

Ji Huang, Chunliang Kuo, Kwan-Ming ChoiHung-Yin Tsai
Polymer Degradation and Stability, 卷.220, 110629
02/2024

摘要

Carbon-carbon composites (CCCs) Corrosion Environmental degradation Microstructural analysis Condensed Matter Physics Mechanics of Materials Polymers and Plastics Materials Chemistry
In this study, a high-performance corrosion-resistant film coating (CUGC-250) is proposed, which utilizes modified carbon nanotubes, reduced graphene oxide, modified fullerene and 2-(2′‑hydroxy-5′-methylphenyl) benzotriazole form a barrier layer, which greatly delays the reaction time of aging. It achieves corrosion resistance and (ultraviolet) UV resistance. CUGC-250 provided a complex tortuous path for the adsorption of H2O molecules by its OH bonds. By utilising the scale effect, the barrier layer was made more stable and complex, and the reaction time of aging was delayed. Provides a new solution for corrosion resistant applications in the industry.

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