Alves Zélia, Ferreira Nuno M, Mendo Sónia, Ferreira Paula, Nunes Cláudia
Department of Chemistry, CICECO-Aveiro Institute of Materials, University of Aveiro, 3810-193 Aveiro, Portugal.
Department of Materials and Ceramic Engineering, CICECO-Aveiro Institute of Materials, University of Aveiro, 3810-193 Aveiro, Portugal.
Int J Mol Sci. 2021 Sep 14;22(18):9943. doi: 10.3390/ijms22189943.
Bionanocomposite materials have been designed as a promising route to enhance biopolymer properties, especially for food packaging application. The present study reports the preparation of bionanocomposite films of alginate with different loadings of pure reduced graphene oxide (rGO) or of mixed zinc oxide-rGO (ZnO-rGO) fillers by solvent casting. Sepiolite is used to make compatible rGO with the hydrophilic matrix. The addition of fillers to alginate matrix maintains the low water solubility promoted by the calcium chloride treatment, and, additionally, they demonstrate a weaker mechanical properties, and a slight increase in water vapor permeability and wettability. Due to the properties of ZnO-rGO, the alginate bionanocomposites show an increase of electrical conductivity with the increase of filler content. While the highest electrical conductivity (0.1 S/m) is achieved by the in-plane measurement, it is in the through-plane measurement the remarkable enhancement of almost 30 times greater than the alginate film. With 50% of ZnO-rGO filler, the bionanocomposites present the highest antioxidant and antibacterial activities. The combination of electrical conductivity with bioactive properties makes these films promising not only to extend food shelf-life but also to allow packaged food sterilization at low temperature.
生物纳米复合材料已被设计为增强生物聚合物性能的一条有前景的途径,特别是在食品包装应用方面。本研究报道了通过溶液浇铸法制备不同负载量的纯还原氧化石墨烯(rGO)或氧化锌-还原氧化石墨烯(ZnO-rGO)混合填料的藻酸盐生物纳米复合薄膜。海泡石用于使rGO与亲水性基质相容。向藻酸盐基质中添加填料保持了氯化钙处理所促进的低水溶性,此外,它们表现出较弱的机械性能,以及水蒸气透过率和润湿性的轻微增加。由于ZnO-rGO的特性,藻酸盐生物纳米复合材料的电导率随填料含量的增加而增加。虽然通过面内测量获得了最高电导率(0.1 S/m),但在面外测量中,其显著增强几乎比藻酸盐薄膜大30倍。含有50% ZnO-rGO填料的生物纳米复合材料具有最高的抗氧化和抗菌活性。电导率与生物活性特性的结合使这些薄膜不仅有望延长食品保质期,还能实现包装食品的低温杀菌。