Li Wei, Zhang Zhengqiao, Wu Jie, Xu Zhenzhen, Liu Zhi
College of Textiles and Garments, Anhui Polytechnic University Wuhu 241000 Anhui Province China
RSC Adv. 2019 Oct 29;9(60):34880-34887. doi: 10.1039/c9ra07384a. eCollection 2019 Oct 28.
To investigate the influence of phosphorylation/caproylation on the adhesion of cornstarch to polylactic acid (PLA) and cotton fibers for improving its applications, such as in PLA and cotton sizing, herein, a series of phosphorylated and caproylated cornstarch (PCS) samples with different total degrees of substitution (DS) were synthetized by the phosphorylation of acid-converted cornstarch (ACS) with sodium tripolyphosphate (STP) and subsequent caproylation with caproic anhydride (CA). The PCS granules were characterized by Fourier transform infrared spectroscopy and scanning electron microscopy. The adhesion was evaluated by determining the bonding forces of the impregnated PLA and cotton roving. The results of the adhesion measurements were also analyzed, especially for the wetting and spreading of the pastes on the fiber surfaces as well as the failure type and internal stress of the adhesive layers among the fibers. In addition, the viscosity stabilities of the pastes were determined. The results showed that phosphorylation/caproylation was capable of obviously improving the adhesion of starch to PLA and cotton fibers. As the total DS increased, the bonding forces gradually increased. The two substituents improved the wetting and spreading, reduced the internal stress, lowered the layer brittleness, and decreased the probabilities of interfacial failure and cohesive failure, thereby favoring the improvement of the adhesion. The PCS samples with stabilities above 85% could meet the stability requirement for sizing. Based on the experimental results of the adhesion and the analysis of the results, it can be concluded that PCS shows potential for applications in PLA and cotton sizing.
为了研究磷酸化/己酰化对玉米淀粉与聚乳酸(PLA)及棉纤维粘附性的影响,以改善其在PLA和棉上浆等方面的应用,本文通过用三聚磷酸钠(STP)对酸转化玉米淀粉(ACS)进行磷酸化,随后用己酸酐(CA)进行己酰化,合成了一系列具有不同总取代度(DS)的磷酸化和己酰化玉米淀粉(PCS)样品。通过傅里叶变换红外光谱和扫描电子显微镜对PCS颗粒进行了表征。通过测定浸渍的PLA和棉粗纱的结合力来评估粘附性。还对粘附测量结果进行了分析,特别是针对浆料在纤维表面的润湿和铺展情况以及纤维间粘合剂层的失效类型和内应力。此外,还测定了浆料的粘度稳定性。结果表明,磷酸化/己酰化能够显著提高淀粉与PLA和棉纤维的粘附性。随着总DS的增加,结合力逐渐增大。这两种取代基改善了润湿和铺展,降低了内应力,降低了层脆性,并降低了界面失效和内聚失效的概率,从而有利于粘附性的提高。稳定性高于85%的PCS样品能够满足上浆的稳定性要求。基于粘附性的实验结果和对结果的分析,可以得出结论,PCS在PLA和棉上浆应用中具有潜力。