Negi Arvind, Tehrani-Bagha Ali R
Department of Bioproducts and Biosystems, School of Chemical Engineering, Aalto University, 02150 Espoo, Finland.
Polymers (Basel). 2024 Jan 3;16(1):149. doi: 10.3390/polym16010149.
There has been continuous interest in developing novel activators that facilitate the functionalization of cellulosic materials. In this paper, we developed a strategy in which trisubstituted triazinium salts act as cellulose preactivators. As leaving groups, these triazinium salts utilize -heterocycles (pyridine, imidazole, and nicotinic acid). Initially, we optimized the synthetic route for developing these novel cellulose preactivators (triazinium salts), whose structures were confirmed using NMR spectroscopy. The surface zeta potential of cellulose changed from a negative value to a positive one after preactivation due to the cationic nature of these preactivators. To enhance the scope of the study, we functionalized the cellulose-preactivated materials with a series of amine- or hydroxy-containing aliphatic and aromatic hydrocarbons, nucleophilic amino acids (cysteine), colorants (2-aminoanthraquinone and 2-amino-3-methyl-anthraquinone), and biopolymer (zein protein). The treated samples were analyzed using FTIR, time-gated Raman spectroscopy, and reflection spectroscopy, and the success of the functionalization process was validated. To widen the scope of such chemistries, we synthesized four reactive agents containing -heterocyclic-based leaving groups (pyridine and nicotinic acid) and successfully functionalized cellulose with them in one step. The proposed single- and two-step functionalization approaches will provide opportunities for chemically linking various chemical compounds to cellulose for different applications.
人们一直对开发促进纤维素材料功能化的新型活化剂有着持续的兴趣。在本文中,我们开发了一种策略,其中三取代三嗪鎓盐用作纤维素预活化剂。作为离去基团,这些三嗪鎓盐利用 - 杂环(吡啶、咪唑和烟酸)。最初,我们优化了开发这些新型纤维素预活化剂(三嗪鎓盐)的合成路线,其结构通过核磁共振光谱得以确认。由于这些预活化剂的阳离子性质,纤维素的表面zeta电位在预活化后从负值变为正值。为了扩大研究范围,我们用一系列含胺或羟基的脂肪族和芳香族烃、亲核氨基酸(半胱氨酸)、着色剂(2 - 氨基蒽醌和2 - 氨基 - 3 - 甲基蒽醌)以及生物聚合物(玉米醇溶蛋白)对纤维素预活化材料进行功能化。使用傅里叶变换红外光谱、时间分辨拉曼光谱和反射光谱对处理后的样品进行分析,并验证了功能化过程的成功。为了拓宽此类化学方法的范围,我们合成了四种含有 - 基于杂环离去基团(吡啶和烟酸)的反应剂,并成功地用它们一步法对纤维素进行功能化。所提出的单步和两步功能化方法将为将各种化合物化学连接到纤维素上以用于不同应用提供机会。