Sustainable adhesives: Exploring boronic ester vitrimers containing lignin microparticles

木质素 胶粘剂 材料科学 复合材料 生物降解 环氧树脂 聚合物 抗剪强度(土壤) 粘接 分散剂 热稳定性 原材料 铝 松香 极限抗拉强度 复合数 异氰酸酯 丙烯酸酯 阻燃剂 剪切(地质)
作者
Martina Nardi,Luca Ceseracciu,Vincenzo Scribano,Marco Contardi,Athanassia Athanassiou,Arkadiusz Żych
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:495: 153400-153400 被引量:16
标识
DOI:10.1016/j.cej.2024.153400
摘要

The market of epoxy resin-based adhesives is constantly growing in the automotive, electronics, and healthcare industries thanks to their unique features such as high bonding strength, durability, and corrosion resistance. In this work, alternative sustainable vitrimer adhesives, containing from 20 to 50 wt% of lignin microparticles, were prepared from epoxidized linseed oil (ELO) and a boronic ester dithiol crosslinker (DBEDT), in the absence of solvents and catalysts. The addition of unmodified commercial Kraft lignin to the composites directly influences their thermal and mechanical properties and determines their bonding capacity between several adherent substrates, also affecting the rewelding potential. The lignin-vitrimer composites and the corresponding neat vitrimer matrix exhibited values of lap shear strengths in the range of 9 to 17 MPa, when tested as adhesives with aluminum, stainless steel, and wood specimens, and good to excellent rewelding capability. The amount of lignin microparticles influences the balance between cohesive and adhesive forces during the separation of the adhered aluminum surfaces and the eventual joint failure. In the case of the composites with 20 wt% of lignin, lap shear strength remains constant even after four cycles of rebonding via compression molding, indicating that the best rewelding performance is associated with previous cohesive failure when the adhesive remains on both aluminum sheets' surfaces. In addition, the adhesion was preserved for 83 % of the initial value after 24 h immersed in water. Importantly, biodegradability in both soil and seawater was enhanced by the presence of the lignin filler. In summary, the simple preparation strategy of bio-based vitrimer composites coming from two natural sources could pave the way to green alternatives for industrial applications, such as epoxy-based adhesives.
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