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Gelatin microgels as a potential corrosion inhibitor carriers for self-healing coatings: Preparation and codeposition: Gelatin microgels as carriers for self-healing coatings

Stankiewicz, A; Jagoda, Z; Zieli?ska, K; Szczygie?, I

Authors

A Stankiewicz

Z Jagoda

K Zieli?ska

I Szczygie?



Abstract

Co-deposition of a coating with capsules containing a corrosion inhibitor is one of the methods to protect the material surface against corrosion. This generation of coatings can be regenerated in response to mechanical or chemical damage. The paper presents a method for preparing gelatin microgels that can be eco-friendly corrosion inhibitor reservoir. The influence of temperature, stirring rate, an addition of surfactants (ionic and non-ionic) on microgel quality has been studied. It has been found that the microgels obtained at 80 °C from the solution containing non-ionic surfactant at concentration below its critical micelle concentration are the most stable and less polydisperse one. As a proof of concept, a Ni-P\gelatin microgels hybrid coating has been obtained by electroless method.

Citation

Stankiewicz, A., Jagoda, Z., Zielińska, K., & Szczygieł, I. (2015). Gelatin microgels as a potential corrosion inhibitor carriers for self-healing coatings: Preparation and codeposition: Gelatin microgels as carriers for self-healing coatings. Materials and corrosion : with International Corrosion abstracts = Werkstoffe und Korrosion : Organ der Arbeitsgemeinschaft Korrosion und der Dechema-Beratungsstelle für Werkstoff-Fragen, 66(12), 1391-1396. https://doi.org/10.1002/maco.201508436

Journal Article Type Article
Acceptance Date Jul 7, 2015
Online Publication Date Aug 12, 2015
Publication Date 2015-12
Deposit Date Jul 31, 2016
Publicly Available Date Aug 13, 2016
Journal Materials and Corrosion
Electronic ISSN 0947-5117
Publisher Wiley
Peer Reviewed Peer Reviewed
Volume 66
Issue 12
Pages 1391-1396
DOI https://doi.org/10.1002/maco.201508436
Keywords Self-healing, microgel, protective coating, Ni-P coating, corrosion inhibitor,
Public URL http://researchrepository.napier.ac.uk/Output/311503
Contract Date Jul 31, 2016

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