Department of Chemistry and Technology of Polymers, Faculty of Chemical Engineering and Technology, Cracow University of Technology, ul. Warszawska 24, 31-155 Kraków, Poland.
Molecules. 2022 Oct 25;27(21):7231. doi: 10.3390/molecules27217231.
Lignin, a highly aromatic macromolecule building plant cells, and cellulose are two of the most commonly occurring natural polymers. Lignosulfonate is a grade of technical lignin, obtained as a by-product in the paper and wood pulping industries, a result of the used lignin isolation method, i.e., sulfite process. In this work, sodium lignosulfonate is used as a starting material to manufacture sulfonamide derivatives of lignin in a two-step modification procedure. Since this direction of the lignin modification is rather rarely investigated and discussed, it makes a good starting point to expand the state of knowledge and explore the properties of lignosulfonamides. Materials obtained after modification underwent characterization by FTIR, SS-NMR, WAXD, SEM, and TGA. Spectroscopic measurements confirmed the incorporation of dihexylamine into the lignin structure and the formation of lignosulfonamide. The crystalline structure of the material was not affected by the modification procedure, as evidenced by the WAXD, with only minute morphological changes of the surface visible on the SEM imaging. The obtained materials were characterized by improved parameters of thermal stability in relation to the raw material. As-prepared sulfonamide lignin derivatives with a potential application as a filler in biopolymeric composites may become a new class of functional, value-added, sustainable additives.
木质素是一种高度芳香的大分子,构成植物细胞,而纤维素则是两种最常见的天然聚合物之一。木质素磺酸盐是一种技术木质素,是纸浆和木材制浆工业的副产品,是使用木质素分离方法(即亚硫酸盐法)的结果。在这项工作中,我们使用木质素磺酸钠作为起始原料,通过两步修饰程序来制造木质素磺酰胺衍生物。由于木质素修饰的这一方向很少被研究和讨论,因此它是扩展知识状态和探索木质素磺酰胺性质的良好起点。经过修饰后的材料通过 FTIR、SS-NMR、WAXD、SEM 和 TGA 进行了表征。光谱测量证实了二己胺被引入到木质素结构中,并形成了木质素磺酰胺。正如 WAXD 所证明的那样,材料的结晶结构不受修饰过程的影响,仅在 SEM 成像中观察到表面有微小的形态变化。所得到的材料的热稳定性参数得到了改善,与原材料相比有所提高。作为一种潜在的生物聚合物复合材料填料,制备的磺酰胺木质素衍生物可能成为一类新的功能性、高附加值、可持续添加剂。