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具有可调机械性能的木质素 Vitrimers 的无催化剂合成:环状聚合物和可回收粘合剂。

Catalyst-Free Synthesis of Lignin Vitrimers with Tunable Mechanical Properties: Circular Polymers and Recoverable Adhesives.

作者信息

Moreno Adrian, Morsali Mohammad, Sipponen Mika H

机构信息

Department of Materials and Environmental Chemistry, Stockholm University, Svante Arrhenius Väg 16C, SE-106 91 Stockholm, Sweden.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 8;13(48):57952-57961. doi: 10.1021/acsami.1c17412. Epub 2021 Nov 23.

Abstract

Biobased circular materials are alternatives to fossil-based engineering plastics, but simple and material-efficient synthetic routes are needed for industrial scalability. Here, a series of lignin-based vitrimers built on dynamic acetal covalent networks with a gel content exceeding 95% were successfully prepared in a one-pot, thermally activated, and catalyst-free "click" addition of softwood kraft lignin (SKL) to poly(ethylene glycol) divinyl ether (PDV). The variation of the content of lignin from 28 to 50 wt % was used to demonstrate that the mechanical properties of the vitrimers can be widely tuned in a facile way. The lowest lignin content (28 wt %) showed a tensile strength of 3.3 MPa with 35% elongation at break, while the corresponding values were 50.9 MPa and 1.0% for the vitrimer containing 50 wt % of lignin. These lignin-based vitrimers also exhibited excellent performance as recoverable adhesives for different substrates such as aluminum and wood, with a lap shear test strength of 6.0 and 2.6 MPa, respectively. In addition, recyclability of the vitrimer adhesives showed preservation of the adhesion performance exceeding 90%, indicating a promising potential for their use in sustainable circular materials.

摘要

生物基循环材料是化石基工程塑料的替代品,但工业规模化需要简单且材料高效的合成路线。在此,通过在一锅法、热活化且无催化剂的条件下,使软木硫酸盐木质素(SKL)与聚乙二醇二乙烯基醚(PDV)进行“点击”加成反应,成功制备了一系列基于动态缩醛共价网络且凝胶含量超过95%的木质素基玻璃态高聚物。通过将木质素含量从28 wt%变化至50 wt%,证明了玻璃态高聚物的机械性能能够以简便的方式进行广泛调节。最低木质素含量(28 wt%)的样品拉伸强度为3.3 MPa,断裂伸长率为35%,而含50 wt%木质素的玻璃态高聚物相应值分别为50.9 MPa和1.0%。这些木质素基玻璃态高聚物作为铝和木材等不同基材的可回收粘合剂也表现出优异性能,搭接剪切试验强度分别为6.0和2.6 MPa。此外,玻璃态高聚物粘合剂的可回收性表明其粘附性能保留率超过90%,这表明它们在可持续循环材料中的应用具有广阔前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d39d/8662642/b974b120fbae/am1c17412_0002.jpg

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