Oxygen-Scavenging Multilayered Biopapers Containing Palladium Nanoparticles Obtained by the Electrospinning Coating Technique

被引:30
作者
Cherpinski, Adriane [1 ]
Szewczyk, Piotr K. [2 ]
Gruszczynski, Adam [2 ]
Stachewicz, Urszula [2 ]
Lagaron, Jose M. [1 ]
机构
[1] Spanish Council Sci Res CSIC, Inst Agrochem & Food Technol IATA, Novel Mat & Nanotechnol Grp, Calle Catedrat Agustin Escardino Benlloch 7, Paterna 46980, Spain
[2] AGH Univ Sci & Technol, Fac Met Engn & Ind Comp Sci, Int Ctr Electron Microscopy Mat Sci, Al A Mickiewicza 30, PL-30059 Krakow, Poland
基金
欧盟地平线“2020”;
关键词
polyhydroxyalkanoates; polycaprolactone; biopapers; palladium nanoparticles; oxygen scavengers; electrospinning; fiber based packaging; FILMS; POLY(3-HYDROXYBUTYRATE); NANOCOMPOSITES; OPTIMIZATION; MORPHOLOGY; BARRIER;
D O I
10.3390/nano9020262
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The main goal of this study was to obtain, for the first time, highly efficient water barrier and oxygen-scavenging multilayered electrospun biopaper coatings of biodegradable polymers over conventional cellulose paper, using the electrospinning coating technique. In order to do so, poly(3-hydroxybutyrate) (PHB) and polycaprolactone (PCL) polymer-containing palladium nanoparticles (PdNPs) were electrospun over paper, and the morphology, thermal properties, water vapor barrier, and oxygen absorption properties of nanocomposites and multilayers were investigated. In order to reduce the porosity, and to enhance the barrier properties and interlayer adhesion, the biopapers were annealed after electrospinning. A previous study showed that electrospun PHB-containing PdNP did show significant oxygen scavenging capacity, but this was strongly reduced after annealing, a process that is necessary to form a continuous film with the water barrier. The results in the current work indicate that the PdNP were better dispersed and distributed in the PCL matrix, as suggested by focus ion beam-scanning electron microscopy (FIB-SEM) experiments, and that the Pd enhanced, to some extent, the onset of PCL degradation. More importantly, the PCL/PdNP nanobiopaper exhibited much higher oxygen scavenging capacity than the homologous PHB/PdNP, due to most likely, the higher oxygen permeability of the PCL polymer and the somewhat higher dispersion of the Pd. The passive and active multilayered biopapers developed here may be of significant relevance to put forward the next generation of fully biodegradable barrier papers of interest in, for instance, food packaging.
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页数:19
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