The class of imidazolium salts contains effective anticorrosion additives for metal substrates. This study evaluated the potential of 1-carboxymethyl-3-methylimidazolium bis (trifluoromethylsulfonyl) imide (HO2CC1MImNTf2) for application in cultural heritage, exploring it as anticorrosion additive in chitosan-based coatings for the protection of copper-based alloys. Under accelerated corrosion conditions with HCl vapor, the chitosan coating with HO2CC1MImNTf2 was less effective than the one with benzotriazole. The coating with a combination of HO2CC1MImNTf2 and benzotriazole resulted in the optimal protective efficacy of the bronze surface, and it also maintained high transparency without changing the bronze appearance.

The synergistic effect of an imidazolium salt and benzotriazole on the protection of bronze surfaces with chitosan-based coatings / Kelen Silva da Conceição, Debora; Nunes de Almeida, Kauana; Nhuch, Elsa; Grazia Raucci, Maria; Santillo, Chiara; Salzano de Luna, Martina; D'Ambrosio, Luigi; Lavorgna, Marino; Giuliani, Chiara; Di Carlo, Gabriella; Staccioli, MARIA PAOLA; Falcade and Henri Stephan Schrekker, Tiago. - In: HERITAGE SCIENCE. - ISSN 2050-7445. - (2020).

The synergistic effect of an imidazolium salt and benzotriazole on the protection of bronze surfaces with chitosan-based coatings

Luigi Ambrosio;Maria Paola Staccioli;
2020

Abstract

The class of imidazolium salts contains effective anticorrosion additives for metal substrates. This study evaluated the potential of 1-carboxymethyl-3-methylimidazolium bis (trifluoromethylsulfonyl) imide (HO2CC1MImNTf2) for application in cultural heritage, exploring it as anticorrosion additive in chitosan-based coatings for the protection of copper-based alloys. Under accelerated corrosion conditions with HCl vapor, the chitosan coating with HO2CC1MImNTf2 was less effective than the one with benzotriazole. The coating with a combination of HO2CC1MImNTf2 and benzotriazole resulted in the optimal protective efficacy of the bronze surface, and it also maintained high transparency without changing the bronze appearance.
2020
Biopolymer matrix, Anticorrosive, Copper-based alloy artifact, Ionic liquid
01 Pubblicazione su rivista::01a Articolo in rivista
The synergistic effect of an imidazolium salt and benzotriazole on the protection of bronze surfaces with chitosan-based coatings / Kelen Silva da Conceição, Debora; Nunes de Almeida, Kauana; Nhuch, Elsa; Grazia Raucci, Maria; Santillo, Chiara; Salzano de Luna, Martina; D'Ambrosio, Luigi; Lavorgna, Marino; Giuliani, Chiara; Di Carlo, Gabriella; Staccioli, MARIA PAOLA; Falcade and Henri Stephan Schrekker, Tiago. - In: HERITAGE SCIENCE. - ISSN 2050-7445. - (2020).
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1657572
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