Department of Engineering, Aarhus University, Hangøvej 2, 8200, Aarhus N, Denmark.
TEKNOS R&D, Industrivej 19, 6850, Vamdrup, Denmark.
ChemSusChem. 2017 Jul 21;10(14):2936-2944. doi: 10.1002/cssc.201700712. Epub 2017 Jun 22.
Epoxy-based thermosets are one of the most popular matrix materials in many industries, and significant environmental benefits can be obtained by developing a recyclable variant of this widely utilized material. Incorporation of a bio-based disulfide additive within a commercial epoxy system leads to a cross-linked material that can be fractionated under mild and environmentally benign conditions. The material has been analyzed by FTIR and solid-state NMR. Furthermore, modified epoxy matrices with low additive concentrations are demonstrated to have similar mechanical and thermal properties compared to commercially available benchmarks. Thus, additive formulation and fractionation based on green chemistry principles have been demonstrated, and a recyclable epoxy matrix has been developed.
基于环氧树脂的热固性塑料是许多行业中最受欢迎的基质材料之一,通过开发这种广泛使用的材料的可回收变体,可以获得重大的环境效益。在商业环氧树脂体系中加入生物基二硫添加剂会导致交联材料,可以在温和且环境友好的条件下进行分离。该材料已通过傅里叶变换红外光谱(FTIR)和固态核磁共振(NMR)进行了分析。此外,与市售基准相比,具有低添加剂浓度的改性环氧树脂基质具有相似的机械和热性能。因此,已经证明了基于绿色化学原理的添加剂配方和分离,并且已经开发出了可回收的环氧树脂基质。