木质素基可回收复合材料的设计与性能

Y. Nagamatsu, M. Funaoka
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引用次数: 4

摘要

通过苯酚和浓酸组成的相分离体系,将苯酚组分选择性地杂化到天然木质素苯丙烷单元的c1位上,定量地得到1,1 -双(芳基)丙烷型线性聚合物(木质素酚)。木质素酚类化合物具有高的酚活性和明显的相变等独特性质。此外,木酚类化合物的功能可以通过分子内开关功能来控制:在碱性条件下,木酚类化合物中的c1 -酚亲核攻击相邻的C2作为开关器件,随后发生芳基醚键的断裂。木质素-对甲酚和木质素- 2,4 -二甲基苯酚具有相似的开关功能和结构特征,木质素-对甲酚在甲酚核上高度羟甲基化(HM),得到具有网络活性的预聚物。另一方面,木质素- 2,4 -二甲基苯酚主要在末端单元上具有反应位点,得到了线性活性预聚物。木质素酚的结构可通过木质素酚-对甲酚与木质素酚- 2,4 -二甲基酚的混合比例或对甲酚与2,4 -二甲基酚在木质素酚中的杂交比例进行控制,然后进行羟基甲基化。所得到的聚合物链在开关点被切割,通过开关功能得到低分子量的亚基。将纤维素与hm -木素酚(hm -木素-对甲酚与hm -木素- 2,4 -二甲基苯酚的混合比例分别为1:0、1:1、0:1)结合制备可回收复合材料。这种复合材料表面光滑,看起来像木头。随着木质素-对甲酚与木质素- 2,4 -二甲基苯酚混合比例的增加,复合材料的尺寸稳定性显著提高。利用木质素酚的开关功能,将复合材料重新分离为低分子量木质素酚和纤维素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Function of Lignin-Based Recyclable Composites
Through the phase-separation system composed of phenols and concentrated acid, the phenol components are selectively hybridized into C1-positions of phenylpropane units of native lignin to give 1, 1-bis(aryl)propane-type linear polymers (lignophenols) quantitatively. Lignophenols have unique properties such as high phenolic activity and obvious phase transition. Furthermore, the functionality of lignophenols was able to be controlled using the intramolecular switching function: Under alkaline condition, C1-phenols in lignophenols nucleophilically attack adjacent C2 as switching devices, followed by the cleavage of aryl ether linkages. In ligno-p-cresol and ligno-2, 4-dimethylphenol with similar switching functionality and structural characteristics, ligno-p-cresol was highly hydroxymethylated (HM) on the cresolic nucleus to give network-living pre-polymer. On the other hand, ligno-2, 4-dimethylphenol having reactive sites mainly on the terminal unit gave linear-living pre-polymers. The structures of polymerized lignophenols were controlled by mixing ratio of HM-ligno-p-cresol and HM-ligno-2, 4-dimethylphenol or by the hybridization ratio of p-cresol and 2, 4-dimethylphenol in lignophenols followed by hydoxymethylation. The resulting polymer chains were cleaved at the switching points to give low molecular weight subunits by the switching function. Recyclable composites were prepared by the combination of cellulose and HM-lignophenol (the mixing ratio of HM-ligno-p-cresol to HM-ligno-2, 4-dimethylphenol was 1:0, 1:1, 0:1, respectively). The composites had glossy surfaces and looked like wood. The dimensional stability of composites was improved significantly with increasing mixing ratio of HM-ligno-p-cresol to HM-ligno-2, 4-dimethylphenol. Using the switching functionality of lignophenol, the composites were re-separated into lignophenols with low molecular weight and cellulose.
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