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.
Int J Biol Macromol. 2019 Aug 15;135:196-202. doi: 10.1016/j.ijbiomac.2019.05.116. Epub 2019 May 20.
In this study, surface, chemical, physicochemical and barrier properties of films treated with hexamethyldisiloxane (HMDSO) cold plasma were investigated. Normal and high amylose starches were gelatinized at different level to obtain films with different amount of free amylopectin. The obtained films were subjected to HMDSO plasma treatment. XPS analysis indicated chemical changes including substitution and crosslinking of the starch molecule, as reflected by the CSi bond increasing and the C-OH bonds reduction on treated films. These changes modified the thermal transitions (Tm and ΔH). The highest amount of CSi bonds was more noticeable in the TF50 film, suggesting a better interaction between active species of plasma and the free amylopectin released into the continuous phase of the film. Moreover, active species of plasma increased the crystallinity in all films. These results suggested that a higher helical packaging, crosslinking and hydrophobic blocking groups (CSi) of starch molecules resulted in films with improved barrier performance against water molecules.
本研究考察了经六甲基二硅氧烷(HMDSO)冷等离子体处理的薄膜的表面、化学、物理化学和阻隔性能。将正常和高直链淀粉在不同程度下糊化,以获得具有不同游离支链淀粉含量的薄膜。所得薄膜经 HMDSO 等离子体处理。XPS 分析表明,淀粉分子发生了化学变化,包括取代和交联,这反映在处理后的薄膜上 CSi 键的增加和 C-OH 键的减少。这些变化改变了热转变(Tm 和 ΔH)。在 TF50 薄膜中,CSi 键的数量最多,这表明等离子体的活性物质与释放到薄膜连续相中的游离支链淀粉之间有更好的相互作用。此外,等离子体的活性物质增加了所有薄膜的结晶度。这些结果表明,淀粉分子的更高螺旋包装、交联和疏水性封端基团(CSi)导致薄膜对水分子的阻隔性能得到改善。