Taketa Thiago B, Dos Santos Danilo M, Fiamingo Anderson, Vaz Juliana M, Beppu Marisa M, Campana-Filho Sérgio P, Cohen Robert E, Rubner Michael F
School of Chemical Engineering, University of Campinas , 13083-852 SP, Campinas, Brazil.
São Carlos Institute of Chemistry, University of São Paulo , 13010-111 SP, São Paulo, Brazil.
Langmuir. 2018 Jan 30;34(4):1429-1440. doi: 10.1021/acs.langmuir.7b04104. Epub 2018 Jan 19.
Chitosan-based thin films were assembled using the layer-by-layer technique, and the axial composition was accessed using X-ray photoelectron spectroscopy with depth profiling. Chitosan (CHI) samples possessing different degrees of acetylation ([Formula: see text]) and molecular weight ([Formula: see text]) produced via the ultrasound-assisted deacetylation reaction were used in this study along with two different polyanions, namely, sodium polystyrenesulfonate (PSS) and carboxymethylcellulose (CMC). When chitosan, a positively charged polymer in aqueous acid medium, was combined with a strong polyanion (PSS), the total positive charge of chitosan, directly related to its [Formula: see text], was the key factor affecting the film formation. However, for CMC/CHI films, the pH of the medium and [Formula: see text] of chitosan strongly affected the film structure and composition. Consequently, the structure and the axial composition of chitosan-based films can be finely adjusted by choosing the polyanion and defining the chitosan to be used according to its DA and [Formula: see text] for the desired application, as demonstrated by the antibacterial tests.
采用层层组装技术制备了壳聚糖基薄膜,并通过具有深度剖析功能的X射线光电子能谱对其轴向组成进行了分析。本研究使用了通过超声辅助脱乙酰反应制备的具有不同脱乙酰度([公式:见原文])和分子量([公式:见原文])的壳聚糖(CHI)样品,以及两种不同的聚阴离子,即聚苯乙烯磺酸钠(PSS)和羧甲基纤维素(CMC)。当壳聚糖(一种在酸性水介质中带正电荷的聚合物)与强聚阴离子(PSS)结合时,壳聚糖的总正电荷与其[公式:见原文]直接相关,是影响成膜的关键因素。然而,对于CMC/CHI薄膜,介质的pH值和壳聚糖的[公式:见原文]强烈影响薄膜的结构和组成。因此,如抗菌测试所示,通过选择聚阴离子并根据其脱乙酰度和[公式:见原文]确定要使用的壳聚糖,可以精细地调节壳聚糖基薄膜的结构和轴向组成,以满足所需的应用。