Literature DB >> 34337945

Fluorine-Free Superhydrophobic Coating with Antibiofilm Properties Based on Pickering Emulsion Templating.

Mor Maayan1,2, Karthik Ananth Mani1,2, Noga Yaakov1, Michal Natan3,4, Gila Jacobi3,4, Ayelet Atkins3,4, Einat Zelinger2, Elazar Fallik5, Ehud Banin3,4, Guy Mechrez1.   

Abstract

This study presents antibiofilm coating formulations based on Pickering emulsion templating. The coating contains no bioactive material because its antibiofilm properties stem from passive mechanisms that derive solely from the superhydrophobic nature of the coating. Moreover, unlike most of the superhydrophobic formulations, our system is fluorine-free, thus making the method eminently suitable for food and medical applications. The coating formulation is based on water in toluene or xylene emulsions that are stabilized using commercial hydrophobic silica, with polydimethylsiloxane (PDMS) dissolved in toluene or xylene. The structure of the emulsions and their stability was characterized by confocal microscopy and cryogenic-scanning electron microscopy (cryo-SEM). The most stable emulsions are applied on polypropylene (PP) surfaces and dried in an oven to form PDMS/silica coatings in a process called emulsion templating. The structure of the resulting coatings was investigated by atomic force microscopy (AFM) and SEM. The surface of the coatings shows a honeycomb-like structure that exhibits a combination of micron-scale and nanoscale roughness, which endows it with its superhydrophobic properties. After tuning, the superhydrophobic properties of the coatings demonstrated highly efficient passive antibiofilm activity. In vitro antibiofilm trials with E. coli indicate that the coatings reduced the biofilm accumulation by 83% in the xylene-water-based surfaces and by 59% in the case of toluene-water-based surfaces.

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Keywords:  Pickering emulsions; antibiofilm; coatings; fluorine-free; superhydrophobic

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Year:  2021        PMID: 34337945     DOI: 10.1021/acsami.1c10125

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  1 in total

1.  Natural Nanoclay-Based Silver-Phosphomolybdic Acid Composite with a Dual Antimicrobial Effect.

Authors:  Andrei A Novikov; Adeliya R Sayfutdinova; Maksim V Gorbachevskii; Sofya V Filatova; Alla V Filimonova; Ubirajara Pereira Rodrigues-Filho; Ye Fu; Wencai Wang; Hongqiang Wang; Vladimir A Vinokurov; Dmitry G Shchukin
Journal:  ACS Omega       Date:  2022-02-14
  1 in total

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