Department of Fibre and Polymer Technology , KTH Royal Institute of Technology , Teknikringen 56 , 100 44 Stockholm , Sweden.
Biomacromolecules. 2018 Jul 9;19(7):3077-3085. doi: 10.1021/acs.biomac.8b00661. Epub 2018 Jun 25.
Biobased unsaturated polyester thermosets as potential replacements for petroleum-based thermosets were designed. The target of incorporating rigid units, to yield thermosets with high thermal and mechanical performance, both in the biobased unsaturated polyester (UP) and reactive diluent (RD) while retaining miscibility was successfully achieved. The biobased unsaturated polyester thermosets were prepared by varying the content of isosorbide, 1,4-butanediol, maleic anhydride, and succinic anhydride in combination with the reactive diluent isosorbide-methacrylate (IM). Isosorbide was chosen as the main component in both the UP and the RD to enhance the rigidity of the formed thermosets, to overcome solubility issues commonly associated with biobased UPs and RDs and volatility and toxicity associated with styrene as RD. All UPs had good solubility in the RD and the viscosity of the mixtures was primarily tuned by the feed ratio of isosorbide but also by the amount of maleic anhydride. The flexural modulus and storage modulus were tailorable by altering the monomer composition The fabricated thermosets had superior thermal and mechanical properties compared to most biobased UP thermosets with thermal stability up to about 250 °C and a storage modulus at 25 °C varying between 0.5 and 3.0 GPa. These values are close to commercial petroleum-based UP thermosets. The designed tailorable biobased thermosets are, thus, promising candidates to replace their petroleum analogs.
设计了生物基不饱和聚酯热固性树脂作为石油基热固性树脂的潜在替代品。目标是在保持混溶性的同时,引入刚性单元,使生物基不饱和聚酯(UP)和反应性稀释剂(RD)的热固性树脂具有高的热性能和机械性能。通过改变异山梨醇、1,4-丁二醇、马来酸酐和琥珀酸酐在与反应性稀释剂异山梨醇-甲基丙烯酸酯(IM)结合时的含量来制备生物基不饱和聚酯热固性树脂。异山梨醇被选为 UP 和 RD 的主要成分,以提高形成的热固性树脂的刚性,克服生物基 UP 和 RD 通常存在的溶解性问题以及 RD 中苯乙烯的挥发性和毒性。所有 UP 都很好地溶解在 RD 中,混合物的粘度主要通过异山梨醇的进料比来调节,但也受到马来酸酐用量的影响。通过改变单体组成可以调节弯曲模量和储能模量。所制备的热固性树脂具有优异的热性能和机械性能,与大多数生物基 UP 热固性树脂相比,热稳定性高达约 250°C,25°C 时的储能模量在 0.5 到 3.0 GPa 之间变化。这些值接近商业石油基 UP 热固性树脂。因此,设计的可定制生物基热固性树脂是替代其石油类似物的有前途的候选材料。