Figueroa-Lopez Kelly J, Prieto Cristina, Pardo-Figuerez Maria, Cabedo Luis, Lagaron Jose M
Novel Materials and Nanotechnology Group, Institute of Agrochemistry and Food Technology (IATA), Spanish Council for Scientific Research (CSIC), Calle Catedrático Agustín Escardino Benlloch 7, 46980 Paterna, Spain.
Polymers and Advanced Materials Group (PIMA), Universitat Jaume I (UJI), Avenida de Vicent Sos Baynat s/n, 12071 Castellón, Spain.
Nanomaterials (Basel). 2023 Feb 23;13(5):823. doi: 10.3390/nano13050823.
Food quality is mainly affected by oxygen through oxidative reactions and the proliferation of microorganisms, generating changes in its taste, odor, and color. The work presented here describes the generation and further characterization of films with active oxygen scavenging properties made of poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) loaded with cerium oxide nanoparticles (CeONPs) obtained by electrospinning coupled to a subsequent annealing process, which could be used as coating or interlayer in a multilayer concept for food packaging applications. The aim of this work is to explore the capacities of these novel biopolymeric composites in terms of O scavenging capacity, as well as antioxidant, antimicrobial, barrier, thermal, and mechanical properties. To obtain such biopapers, different ratios of CeONPs were incorporated into a PHBV solution with hexadecyltrimethylammonium bromide (CTAB) as a surfactant. The produced films were analyzed in terms of antioxidant, thermal, antioxidant, antimicrobial, optical, morphological and barrier properties, and oxygen scavenging activity. According to the results, the nanofiller showed some reduction of the thermal stability of the biopolyester but exhibited antimicrobial and antioxidant properties. In terms of passive barrier properties, the CeONPs decreased the permeability to water vapor but increased the limonene and oxygen permeability of the biopolymer matrix slightly. Nevertheless, the oxygen scavenging activity of the nanocomposites showed significant results and improved further by incorporating the surfactant CTAB. The PHBV nanocomposite biopapers developed in this study appear as very interesting constituents for the potential design of new active organic recyclable packaging materials.
食品质量主要通过氧化反应和微生物繁殖受到氧气影响,从而使其味道、气味和颜色发生变化。本文介绍了一种具有活性氧清除性能的薄膜的制备及其进一步表征,该薄膜由负载氧化铈纳米颗粒(CeONPs)的聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)制成,通过静电纺丝结合后续退火工艺获得,可作为多层食品包装概念中的涂层或中间层。这项工作的目的是探索这些新型生物聚合物复合材料在氧清除能力、抗氧化、抗菌、阻隔、热和机械性能方面的能力。为了获得这种生物纸,将不同比例的CeONPs掺入以十六烷基三甲基溴化铵(CTAB)为表面活性剂的PHBV溶液中。对制备的薄膜进行了抗氧化、热、抗氧化、抗菌、光学、形态和阻隔性能以及氧清除活性的分析。结果表明,纳米填料使生物聚酯的热稳定性有所降低,但具有抗菌和抗氧化性能。在被动阻隔性能方面,CeONPs降低了水蒸气的渗透性,但略微增加了生物聚合物基质对柠檬烯和氧气的渗透性。然而,纳米复合材料的氧清除活性显示出显著效果,并且通过加入表面活性剂CTAB进一步提高。本研究中开发的PHBV纳米复合生物纸似乎是新型活性有机可回收包装材料潜在设计中非常有趣的成分。