Energy storage container coating is water-based or oil-based
Energy storage container coating is water-based or oil-based
6 FAQs about [Energy storage container coating is water-based or oil-based ]
How do encapsulated micro/nanocontainers work?
The micro/nanocontainers can respond to one or several stimuli from the environmental changes and give rapid feedback. As a result, the encapsulated active species are triggered to release to repair the coatings and therefore inhibit further corrosion.
Can magnetic-based micro/nanocontainers be used in coatings?
The application of magnetic-based micro/nanocontainers in the coating is an improvement that can be tried since the location and orientation of the magnetic-based micro/nanocontainers can be well controlled by applying an external magnetic field.
Are micro/nanocontainers-based intelligent coatings effective in corrosion protection fields?
Recent progress of the micro/nanocontainers-based intelligent coatings in corrosion protection fields is summarized. The classification and synthesis methods of different micro/nanocontainers are reviewed with various examples. The release kinetics of the encapsulated active agents from the micro/nanocontainers are analyzed.
What are encapsulated active substances?
These encapsulated active substances are released on demand and contribute to forming a protective layer on the metal surface with the response of the environmental changes, therefore achieving the active corrosion protection or self-repairing functions.
What influences the release of encapsulated payloads from inorganic micro/nanocontainers?
In contrast, the release of the encapsulated payloads from inorganic micro/nanocontainers is more influenced by the physical or mechanical effects, such as outer pressure, thermomechanical destruction and the porosity of the micro/nanocontainer surface, etc. 2.3. Organic/inorganic hybrid micro/nanocontainers
Can photocatalytic materials be used to design light-responsive coatings?
The application of photocatalytic materials is a widely used method for designing such intelligent light-responsive coatings, such as TiO 2, WO 3 and CdS, et al. He loaded 8-HQ inhibitors in TiO 2 nanoparticles and then coated a polyethyleneimine shell to prepare a photocatalytic self-repairing coating.
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