儿茶酚
胶粘剂
固化(化学)
木质素
材料科学
热稳定性
苯酚
酚类
粘结强度
化学工程
反应机理
热固性聚合物
有机化学
化学改性
环氧树脂
化学结构
高分子化学
粘结强度
反应速率
氧化还原
表面改性
粘接
降级(电信)
反应条件
酪氨酸酶
对苯二酚
作者
Jiongjiong Li,Jiongjiong Li,Xiaobin Yu,Zhiqin Wang,Yan Lyu,Jianzhang Li,Jianzhang Li,Jin Wang,Xiaona Li
摘要
ABSTRACT Inspired by the adhesive mechanism of mussel adhesive protein (DOPA), lignin was oxidized under mild conditions to mimic catechol and ortho‐quinone structures. The resulting oxidized lignin (ODL) was subsequently employed to prepare fast‐curing lignin‐based phenolic resins (ODLPF). Structural characterizations confirmed that the phenolic rings in lignin were transformed into ortho‐quinone and/or catechol following the oxidation reaction. The reactive functional groups in ODL facilitated cross‐linking reactions with the phenolic resin networks, while catechol underwent a reverse dismutation reaction with ortho‐quinone. The ODLPF resins demonstrated enhanced performance, including a faster curing rate, improved bonding strength, higher debonding work, and superior thermal stability compared to unmodified lignin‐based phenolic resins. This biomimetic modification strategy offers a sustainable approach to developing high‐performance biomass‐based phenolic resins with significant potential for industrial applications.
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