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Lignin as a Functional Green Coating on Carbon Fiber Surface to Improve Interfacial Adhesion in Carbon Fiber Reinforced Polymers

机译:木质素作为碳纤维表面上的功能性绿色涂层,以改善碳纤维增强聚合物中的界面粘附性

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摘要

While intensive efforts are made to prepare carbon fiber reinforced plastics from renewable sources, less emphasis is directed towards elaborating green approaches for carbon fiber surface modification to improve the interfacial adhesion in these composites. In this study, we covalently attach lignin, a renewable feedstock, to a graphitic surface for the first time. The covalent bond is established via aromatic anchoring groups with amine functions taking part in a nucleophilic displacement reaction with a tosylated lignin derivative. The successful grafting procedures were confirmed by cyclic voltammetry, X-ray photoelectron spectroscopy, and field emission scanning electron microscopy coupled with energy dispersive X-ray spectroscopy. Both fragmentation and microdroplet tests were conducted to evaluate the interfacial shear strength of lignin coated carbon fiber samples embedded in a green cellulose propionate matrix and in a commercially used epoxy resin. The microdroplet test showed ~27% and ~65% increases in interfacial shear strength for the epoxy and cellulose propionate matrix, respectively. For the epoxy matrix covalent bond, it is expected to form with lignin, while for the cellulosic matrix hydrogen bond formation might take place; furthermore, plastisizing effects are also considered. Our study opens the gates for utilizing lignin coating to improve the shear tolerance of innovative composites.
机译:在从可再生源制备碳纤维增强塑料的密集努力的同时,较少强调旨在详细阐述碳纤维表面改性的绿色方法,以改善这些复合材料中的界面粘附。在这项研究中,我们首次共价将木质素,可再生原料贴在石墨表面上。共价键通过芳族锚定基团建立,其中胺功能参与与甲苯胺化木蛋白衍生物的亲核置换反应。通过循环伏安法,X射线光电子能谱和与能量分散X射线光谱耦合的场发射扫描电子显微镜来确认成功的接枝程序。进行碎片和微滴测试,以评价木质素涂层碳纤维样品的界面剪切强度,嵌入绿色纤维素丙酸盐基质和商业上使用的环氧树脂中。微量滴车试验显示出〜27%〜65%的环氧树脂和纤维素丙酸酯基质的界面剪切强度增加。对于环氧基质共价键,预期与木质素形成,而对于纤维素基质氢键形成可能发生;此外,还考虑了品质化效果。我们的研究打开了利用木质素涂层来改善创新复合材料的剪切容差的栅极。

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