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Natural Deep Eutectic Solvents Based on Choline Chloride and Phenolic Compounds as Efficient Bioadhesives and Corrosion Protectors

  • Matías L. Picchio*
  • , Daniela Minudri
  • , Daniele Mantione
  • , Miryam Criado-Gonzalez
  • , Gregorio Guzmán-González
  • , Ruth Schmarsow
  • , Alejandro J. Müller
  • , Liliana C. Tomé
  • , Roque J. Minari
  • , David Mecerreyes*
  • *Autor correspondiente de este trabajo
  • Consejo Nacional de Investigaciones Científicas y Técnicas
  • Facultad de Ciencias Químicas (Universidad Nacional de Córdoba)
  • Joxe Mari Korta Center
  • NOVA University Lisbon

Producción científica: Contribución a una revistaArtículorevisión exhaustiva

79 Citas (Scopus)

Resumen

Natural deep eutectics solvents (NADES), owing to their high solvation capacity and nontoxicity, are actively being sought for many technological applications. Herein, we report a series of novel NADES based on choline chloride and plant-derived polyphenols. Most of the obtained phenolic NADES have a wide liquid range and high thermal stability above 150 °C. Among them, small-sized polyphenols, like pyrogallol, vanillyl alcohol, or gentisic acid, lead to low-viscosity liquids with ionic conductivities in the order of 10-3S cm-1at room temperature. Interestingly, polyphenols possess valuable properties as therapeutic agents, antioxidants, adhesives, or redox-active compounds, among others. Thus, we evaluated the potential of these novel NADES for two applications: bioadhesives and corrosion protection. The mixture of choline chloride-vanillyl alcohol (2:3 mol ratio) and gelatin resulted in a highly adhesive viscoelastic liquid (adhesive stress ≈ 135 kPa), affording shear thinning behavior. Furthermore, choline chloride-tannic acid (20:1) showed an extraordinary ability to coordinate iron ions, reaching excellent corrosion inhibitive efficiencies in mild steel protection.

Idioma originalInglés
Páginas (desde-hasta)8135-8142
Número de páginas8
PublicaciónACS Sustainable Chemistry and Engineering
Volumen10
N.º25
DOI
EstadoPublicada - 27 jun 2022
Publicado de forma externa

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