Zein/hydroxypropylcellulose biofilms with hydrophilic and hydrophobic montmorillonite clays

Author:

Ulrich Gabriella D.1,Lemos Ana G.1,Silva‐Alvarez Amanda C. F.2,Paiva Lucilene B.3,Gavioli Renato R.3,da Silva Lucimara L.4,de Freitas Osvaldo2,Francisco Kelly R.1ORCID

Affiliation:

1. Department of Natural Sciences, Mathematics and Education Federal University of São Carlos – UFSCar Araras Brazil

2. Department of Pharmaceutical Sciences, School of Pharmaceuticals Sciences of Ribeirão Preto University of São Paulo Ribeirão Preto Brazil

3. Group for Bionanomanufacturing, Laboratory of Chemical Process and Particle Technology Institute for Technological Research of the State of São Paulo (IPT) São Paulo Brazil

4. Chemical Engineering Program Federal Technological University of Paraná – UTFPR Londrina Brazil

Abstract

AbstractThis study analyzed the changes in the structural, morphological and mechanical properties of Biofilm A (46.1% zein/30.8% hydroxypropylcellulose/23.1% propylene glycol) and Biofilm B (53.8% zein/23.1% hydroxypropylcellulose/23.1% propylene glycol) when 0.5%, 1% or 2% Cloisite Na+ (NaMt) and 1% Cloisite 30B (C30B) were added to the systems. Infrared spectroscopy showed clay particles interact with the polymeric matrix mainly via hydrogen bonds between silanol and amide/hydroxyl groups from minerals and polymers, respectively. X‐ray diffraction and small angle X‐ray scattering patterns indicated clays were exfoliated in both formulations with 0.5% NaMT and 1% C30B, or presented larger lamellar spacing on biofilms containing 1% or 2% of hydrophilic clay compared to pure clays. Scanning electron micrographs showed clay were incorporated into the polymers at low clay content and presented some aggregates at 2% NaMt. Mechanical tests showed that Biofilms B had better mechanical properties compared to Biofilms A, and Biofilms B with 1% NaMt presented the highest value of tensile strength. Moreover, the addition of organophilic clay in both formulations produced nanocomposites with good mechanical properties. These results showed clays are strategic to obtain nanocomposite films with interesting physical and chemical properties.

Funder

Fundação de Amparo à Pesquisa do Estado de São Paulo

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,General Chemistry,Ceramics and Composites

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