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纤维素功能化新可持续绿色策略的开发:一种在环境条件下无机械化学催化剂且无溶剂的工艺。

Development of a new sustainable greener strategy for cellulose functionalization: A mechanochemical catalyst-free and solvent-free process in ambient conditions.

作者信息

Zaharani Lia, Vequizo Majvell Kay, Amiri Zeynab Raftani, Johan Mohd Rafie, Majid Wan Haliza Abd, Khaligh Nader Ghaffari

机构信息

Nanotechnology and Catalysis Research Center, Institute for Advanced Studies (IAS), Universiti Malaya, 50603 Kuala Lumpur, Malaysia.

Department of Food Science and Technology, Sari Agricultural Sciences and Natural Resources University, 578 Sari, Mazandaran, Iran.

出版信息

Int J Biol Macromol. 2025 Apr;304(Pt 2):140907. doi: 10.1016/j.ijbiomac.2025.140907. Epub 2025 Feb 11.

Abstract

The carboxylation of cellulose by maleic anhydride in the molten solvent-free and catalyst-free process gave a low degree of substitution (DS). The most of maleic anhydride was sublimated in its melting point and stirring became a problem. Therefore, the cellulose was functionalized with maleic anhydride for the first time by a planetary ball mill at ambient conditions in the absence of solvent and catalyst. The chemical structure, morphology and surface composition, particle size distribution, surface charge, and the degree of substitution of the functionalized cellulose were investigated. A reduction in particle size was demonstrated. The EDX analysis showed an increasing average C/O mass ratio. The zeta potential decreased from -10.2 mV for cellulose to -4.08 mV for functionalized cellulose. The DS was 3.10 ± 0.02, 3.23, and 3.24 mmol of carboxyl groups per gram of functionalized cellulose by the conductometry, back titration, and combined TG-DSC analysis, respectively. XPS C1s and O1s energies demonstrated cellulose functionalization. Moreover, TG-DTA plots demonstrated a slight decrease in the thermal stability of the functionalized cellulose. Water vaporization in a two-step process was observed for the functionalized cellulose. A glass transition and decarboxylation were detected in the DSC plot of the functionalized cellulose.

摘要

在无溶剂、无催化剂的熔融过程中,马来酸酐对纤维素进行羧化反应,得到的取代度(DS)较低。大部分马来酸酐在其熔点升华,搅拌成为一个问题。因此,首次在环境条件下,在无溶剂和无催化剂的情况下,通过行星式球磨机用马来酸酐对纤维素进行功能化处理。对功能化纤维素的化学结构、形态和表面组成、粒度分布、表面电荷以及取代度进行了研究。结果表明粒度减小。能谱分析显示平均C/O质量比增加。zeta电位从纤维素的-10.2 mV降至功能化纤维素的-4.08 mV。通过电导法、返滴定法和TG-DSC联用分析,功能化纤维素每克的羧基取代度分别为3.10±0.02、3.23和3.24 mmol。XPS的C1s和O1s能量证明了纤维素的功能化。此外,TG-DTA曲线表明功能化纤维素的热稳定性略有下降。观察到功能化纤维素的水汽化过程分两步进行。在功能化纤维素的DSC曲线中检测到玻璃化转变和脱羧反应。

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