Genua Aratz, Montes Sarah, Azcune Itxaso, Rekondo Alaitz, Malburet Samuel, Daydé-Cazals Bénédicte, Graillot Alain
CIDETEC, Basque Research and Technology Alliance (BRTA), Paseo Miramón, 196, 20014 Donostia-San Sebastián, Spain.
SPECIFIC POLYMERS, Zac Via Domita, 150 Avenue des Cocardières, 34160 Castries, France.
Polymers (Basel). 2020 Nov 10;12(11):2645. doi: 10.3390/polym12112645.
Epoxy resins are widely used in the composite industry due to their dimensional stability, chemical resistance, and thermo-mechanical properties. However, these thermoset resins have important drawbacks. (i) The vast majority of epoxy matrices are based on non-renewable fossil-derived materials, and (ii) the highly cross-linked molecular architecture hinders their reprocessing, repairing, and recycling. In this paper, those two aspects are addressed by combining novel biobased epoxy monomers derived from renewable resources and dynamic crosslinks. Vanillin (lignin) and phloroglucinol (sugar bioconversion) precursors have been used to develop bi- and tri-functional epoxy monomers, diglycidyl ether of vanillyl alcohol (DGEVA) and phloroglucinol triepoxy (PHTE) respectively. Additionally, reversible covalent bonds have been incorporated in the network by using an aromatic disulfide-based diamine hardener. Four epoxy matrices with different ratios of epoxy monomers (DGEVA/PHTE wt%: 100/0, 60/40, 40/60, and 0/100) were developed and fully characterized in terms of thermal and mechanical properties. We demonstrate that their performances are comparable to those of commonly used fossil fuel-based epoxy thermosets with additional advanced reprocessing functionalities.
环氧树脂因其尺寸稳定性、耐化学性和热机械性能而在复合材料行业中得到广泛应用。然而,这些热固性树脂存在重要缺点。(i)绝大多数环氧基体基于不可再生的化石衍生材料,并且(ii)高度交联的分子结构阻碍了它们的再加工、修复和回收利用。在本文中,通过结合源自可再生资源的新型生物基环氧单体和动态交联来解决这两个方面的问题。香草醛(木质素)和间苯三酚(糖生物转化)前体已分别用于开发双官能和三官能环氧单体,即香草醇二缩水甘油醚(DGEVA)和间苯三酚三环氧(PHTE)。此外,通过使用基于芳族二硫化物的二胺固化剂在网络中引入了可逆共价键。开发了四种具有不同环氧单体比例(DGEVA/PHTE重量百分比:100/0、60/40、40/60和0/100)的环氧基体,并对其热性能和机械性能进行了全面表征。我们证明,它们的性能与常用的基于化石燃料的环氧热固性材料相当,并且具有额外的先进再加工功能。