Aguirre-Loredo Rocio Yaneli, Fonseca-García Abril, Calambas Heidy Lorena, Salazar-Arango Alejandra, Caicedo Carolina
Centro de Investigación en Química Aplicada (CIQA), Blvd. Enrique Reyna Hermosillo 140, Saltillo, Coahuila 25294, Mexico.
Investigadoras por México CONACYT-CIQA, Blvd. Enrique Reyna Hermosillo 140, Saltillo, Coahuila 25294, Mexico.
Heliyon. 2023 May 27;9(6):e16782. doi: 10.1016/j.heliyon.2023.e16782. eCollection 2023 Jun.
Thermoplastic biofilms were developed from achira starch, chitosan and nanoclays using the solvent-casting method. To obtain the filmogenic solutions, different sonication times (0, 10, 20 and 30 min) were considered in order to evaluate the incidence of this parameter on the chemical and physico-mechanical properties of the bionanocomposite films. The chemical analysis using FTIR spectroscopy showed strong intermolecular interactions between the components with increasing sonication times. The results for tensile strength and elongation were satisfactory for films with 20 min of sonication with increases of 154% and 161%, respectively. Morphological analysis showed greater homogeneity, while thermal analysis showed that sonication favoured the plasticization process and thus, the production of homogeneous materials. The water absorption and wettability tests showed less hydrophilic materials allowing these new materials to be considered for use as coatings or packaging for the food sector.
采用溶液浇铸法,以竹芋淀粉、壳聚糖和纳米粘土为原料制备了热塑性生物膜。为了获得成膜溶液,考虑了不同的超声处理时间(0、10、20和30分钟),以评估该参数对生物纳米复合膜的化学和物理机械性能的影响。使用傅里叶变换红外光谱(FTIR)进行的化学分析表明,随着超声处理时间的增加,各组分之间存在强烈的分子间相互作用。对于超声处理20分钟的薄膜,拉伸强度和伸长率的结果令人满意,分别提高了154%和161%。形态分析显示出更高的均匀性,而热分析表明超声处理有利于增塑过程,从而有利于制备均匀的材料。吸水和润湿性测试表明,这些新材料的亲水性较低,可考虑用作食品行业的涂层或包装材料。