Cantamessa Francesco, Damonte Giacomo, Monticelli Orietta, Arrigo Rossella, Fina Alberto
Dipartimento di Scienza Applicata e Tecnologia, Politecnico di Torino, 15121 Alessandria, Italy.
Dipartimento di Chimica e Chimica Industriale, Università di Genova, 16146 Genova, Italy.
ACS Appl Polym Mater. 2022 Jul 8;4(7):4796-4807. doi: 10.1021/acsapm.2c00416. Epub 2022 Jun 17.
A covalent adaptable network based on the thermoreversible cross-linking of an ethylene-propylene rubber through Diels-Alder (DA) reaction was prepared for the first time through melt blending as an environmental-friendly alternative to traditional synthesis in organic solvents. Functionalization of the rubber with furan groups was performed in a melt blender and subsequently mixed with different amounts of bismaleimide in a microextruder. Cross-linking was confirmed by FT-IR spectroscopy and insolubility at room temperature, while its thermoreversible character was confirmed by a solubility test at 110 °C and by remolding via hot-pressing. Mechanical and thermomechanical properties of the obtained rubbers showed potential to compete with conventionally cross-linked elastomers, with stiffness in the range 1-1.7 MPa and strain at break in the range 200-500%, while allowing recycling via a simple melt processing step. Nanocomposites based on the thermoreversible rubber were prepared with reduced graphene oxide (rGO), showing significantly increasing stiffness up to ca. 8 MPa, ∼2-fold increased strength, and thermal conductivity up to ∼0.5 W/(m K). Results in this paper may open for industrially viable and sustainable applications of thermoreversible elastomers.
首次通过熔融共混制备了一种基于乙烯-丙烯橡胶通过狄尔斯-阿尔德(DA)反应进行热可逆交联的共价自适应网络,作为在有机溶剂中传统合成方法的环保替代方案。在熔融共混器中对橡胶进行呋喃基官能化,随后在微型挤出机中与不同量的双马来酰亚胺混合。通过傅里叶变换红外光谱(FT-IR)和室温下的不溶性确认交联,而通过在110°C下的溶解度测试和热压重塑确认其热可逆特性。所得橡胶的机械和热机械性能显示出与传统交联弹性体竞争的潜力,刚度在1-1.7MPa范围内,断裂应变在200-500%范围内,同时允许通过简单的熔融加工步骤进行回收。基于热可逆橡胶制备了含有还原氧化石墨烯(rGO)的纳米复合材料,其刚度显著提高至约8MPa,强度提高约2倍,热导率提高至约0.5W/(m·K)。本文的结果可能为热可逆弹性体在工业上可行且可持续的应用开辟道路。