环氧树脂
热固性聚合物
缩水甘油醚
丁香酚
材料科学
固化(化学)
双酚A
热稳定性
复合材料
聚合物
玻璃化转变
极限抗拉强度
高分子化学
有机化学
化学
作者
Yuehong Zhang,Mengjiao Zhai,Fei Ma,Yuzhan Li,Bin Lyu,Tuan Liu,Zhenhua Gao,Liwei Wang,D. N. Vincent,Michael R. Kessler
标识
DOI:10.1002/mame.202100833
摘要
Abstract Eugenol‐based epoxy monomer (Eu‐EP) is prepared here, followed by curing with a novel eugenol‐derived diamine (Eu‐DA) curing agent for fully eugenol‐based epoxy thermosets. The cure behavior, thermal stability, mechanical properties, and thermomechanical properties of these eugenol‐based epoxy resins are investigated and compared with a partially biobased epoxy thermoset prepared from diglycidyl ether of bisphenol A (DGEBA) and Eu‐DA. Both epoxy materials exhibit storage moduli higher than 2.1 GPa at room temperature. The tensile strength of Eu‐EP/Eu‐DA (21.9 MPa) is comparable to that of the DGEBA/Eu‐DA (24.3 MPa) thermosets and the epoxy thermoset cured from DGEBA and Eu‐DA shows a higher glass transition temperature than those from Eu‐EP and Eu‐DA. The synthesis strategy of Eu‐DA and Eu‐EP shows great potential to be applied in other biobased building blocks with hydroxyl groups. Overall, eugenol is a renewable resource to develop high value‐added chemicals and sustainable polymers with comparable properties to petroleum‐based counterparts.
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