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用于设计坚韧、自修复弹性体的木质素刚性低聚物

Rigid Oligomer from Lignin in Designing of Tough, Self-Healing Elastomers.

作者信息

Cui Mengmeng, Nguyen Ngoc A, Bonnesen Peter V, Uhrig David, Keum Jong K, Naskar Amit K

机构信息

Carbon and Composite Group, Materials Science and Technology Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

Center for Nanophase Materials Science, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831, United States.

出版信息

ACS Macro Lett. 2018 Nov 20;7(11):1328-1332. doi: 10.1021/acsmacrolett.8b00600. Epub 2018 Oct 16.

Abstract

Converting lignin into well-defined compounds is often challenged by structural complexation and inorganic contamination induced by the pulping process. In this report, instead of breaking down lignin into small molecules, we extracted a uniform and rigid oligomer from the lignin waste stream. The multifunctional polyphenol oligomer containing carboxylic acid, alcohol, and phenol groups is highly reactive and brings stiffness into the material matrix. Tough and self-healing elastomers are economically prepared from this oligomer by a reaction with epoxy-terminated polyethylene glycol, without needing any solvent. Specifically, the polyaromatic backbone's rigidity enhances the elastomer's toughness, and the multiple polar substituents form a network of hydrogen bonding that heals the elastomer. Many other applications, including adhesives, hydrogels, coating, and metal scavengers, are envisioned based on this oligomer's unique properties.

摘要

将木质素转化为结构明确的化合物通常面临制浆过程中结构络合和无机污染带来的挑战。在本报告中,我们并非将木质素分解为小分子,而是从木质素废物流中提取出一种均匀且刚性的低聚物。这种含有羧酸、醇和酚基团的多功能多酚低聚物具有高反应活性,并能为材料基体带来硬度。通过与环氧封端的聚乙二醇反应,无需任何溶剂,就能经济地制备出坚韧且自修复的弹性体。具体而言,聚芳族主链的刚性增强了弹性体的韧性,多个极性取代基形成氢键网络,使弹性体得以自愈。基于这种低聚物的独特性能,还设想了许多其他应用,包括粘合剂、水凝胶、涂层和金属清除剂等。

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