Polydopamine coating in organic solvent for material-independent immobilization of water-insoluble molecules and avoidance of substrate hydrolysis

[Display omitted] Polydopamine (pDA) coating is the first material-independent surface chemistry utilized in energy storage systems, environmental technology, and biomaterial science. However, the conventional coating method requires use of aqueous solutions, which restrict immobilization of water-i...

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Veröffentlicht in:Journal of industrial and engineering chemistry (Seoul, Korea) 2017, 46(0), , pp.379-385
Hauptverfasser: You, Inseong, Jeon, Hyejin, Lee, Kyueui, Do, Minjae, Seo, Young Chang, Lee, Haesung A., Lee, Haeshin
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Sprache:eng
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Zusammenfassung:[Display omitted] Polydopamine (pDA) coating is the first material-independent surface chemistry utilized in energy storage systems, environmental technology, and biomaterial science. However, the conventional coating method requires use of aqueous solutions, which restrict immobilization of water-insoluble molecules onto surfaces, and the coating cannot be applied to degradable polyester substrates. Herein, methods to form pDA in organic protic solvents (o-pDA) with fast coating kinetics resulting in ∼50nm in thickness just for 4h. One-step immersion of surfaces in a one-pot mixture of a water-insoluble molecule, dopamine, and piperidine results in o-pDA coating with robust surface immobilization of molecules of interest.
ISSN:1226-086X
1876-794X
DOI:10.1016/j.jiec.2016.11.007