羧酸盐
醋酸酐
化学
离子液体
氯化胆碱
烷基
淀粉
有机化学
高分子化学
乙酰氯
乙酰化
氯化物
催化作用
生物化学
基因
作者
Fei Ren,Jinwei Wang,Jinglin Yu,Cheng Zhong,Fengwei Xie,Shujun Wang
标识
DOI:10.1016/j.carbpol.2022.119353
摘要
This work demonstrates that acetylated maize starches (AMS) with varied degree of substitution (DS, 0.26-2.63) was synthesized in ionic liquids (ILs) (imidazolium chloride, imidazolium carboxylate and choline carboxylate) at 85 °C without catalyst. The DS of AMS and reaction efficiency increased with decreasing alkyl chain length of cations or anions, while decreased as the choline cation replaced the imidazolium cation and the chloride anion replaced the acetate anion. The AMS synthesized in imidazolium-based ILs exhibited much higher hydrophobicity and thermal stability than the native starch. Rheological properties of ILs and ATR-FTIR analysis of acetic anhydride/ILs mixtures indicated that a shorter alkyl side chain or the combination of an imidazolium cation and an acetate anion gave ILs lower viscosities and weaker interactions between acetic anhydride molecules, which favored the acetylation of starch. These findings provide insights into the design of green processes to modify starch and the application of acetylated starch.
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