Instituto Politécnico Nacional, Centro de Investigación en Ciencia Aplicada y Tecnología Avanzada, Cerro Blanco No. 141, Col. Colinas del Cimatario, C.P. 76090, Santiago de Querétaro, Querétaro, Mexico.
Centro de Investigación en Química Aplicada, Blvd. Enrique Reyna No. 140, C.P. 25253, Saltillo, Coahuila, Mexico.
Carbohydr Polym. 2021 Mar 1;255:117349. doi: 10.1016/j.carbpol.2020.117349. Epub 2020 Nov 2.
Normal and high amylose corn starches were modified using HMDSO plasma at different time treatments. Changes in functional properties of starch granule, film-forming solutions (FFS) and films were investigated. SEM analysis revealed HMDSO coating deposition on the granule surface, which limited the amylopectin leach out from the granules to the continuous matrix, affecting the rheological properties of the FFS. The amylopectin restriction resulted in a low reinforcement of the network decreasing the viscosity as indicated by n and k values. Also, a gel-like behavior (G' > G″) was observed when the amylose and time treatment increased, suggesting that the matrix becomes less elastic with softer entanglement. This behavior was confirmed by creep test and Burger model parameters. The plasma treatments allowed obtaining FFS with low viscosity, suitable for developing soft and hydrophobic films with low flexibility, as indicated by the decrease of the maximum stress, Hencky strain and permeance values.
采用 HMDSO 等离子体对正常和高直链玉米淀粉进行不同时间的改性。研究了淀粉颗粒、成膜溶液(FFS)和薄膜的功能特性变化。SEM 分析表明,HMDSO 涂层沉积在颗粒表面,限制了支链淀粉从颗粒中浸出到连续基质中,从而影响了 FFS 的流变特性。支链淀粉的限制导致网络的增强程度较低,从而降低了粘度,如 n 和 k 值所示。此外,当直链淀粉和时间处理增加时,观察到凝胶状行为(G' > G″),表明随着缠结变得更软,基质的弹性降低。这种行为通过蠕变试验和 Burger 模型参数得到了证实。等离子体处理可以获得低粘度的 FFS,适合开发柔软和疏水性的薄膜,其最大应力、亨奇应变和渗透率值降低。