Qi Min, Xu Ying-Jun, Rao Wen-Hui, Luo Xi, Chen Li, Wang Yu-Zhong
Center for Degradable and Flame-Retardant Polymeric Materials (ERCEPM-MoE), National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Polymer Materials Engineering, Sichuan University Chengdu Sichuan 610064 China
RSC Adv. 2018 Jul 30;8(47):26948-26958. doi: 10.1039/c8ra03874k. eCollection 2018 Jul 24.
The construction of fully bio-based epoxy resins (EP) has been of particular interest in both academia and industrial circles for years; among these, epoxidized soybean oil (ESO) derived thermosets have received the most attention, but they usually exhibit poor performance due to their flexible fatty chains. Herein, tannic acid (TA), with its great degree of functionality and massive aromatic structures, was chosen as the multi-phenol curing agent for ESO to prepare fully bio-based EP thermosets with a high relaxation temperature and satisfactory mechanical properties. As a natural 2-substituted imidazole-containing substance, histidine (H) was used as the curing accelerator under moderate curing conditions (120-180 °C). This EP system showed high curing activity and a good curing degree while operating. The cured thermosets were found to be thermally stable ( > 270 °C) and displayed a high relaxation temperature (77 °C) with a tensile strength of 23 MPa. Preliminary adhesion tests showed that the cured product exhibited a high lap-shear strength of about 19 MPa in adhesion failure mode. Taking these advantages into account, this kind of fully bio-based EP could introduce more chances for versatile applications, such as being used in structural materials and construction adhesives.
多年来,全生物基环氧树脂(EP)的构建在学术界和工业界都备受关注;其中,环氧大豆油(ESO)衍生的热固性材料受到了最多关注,但由于其柔性脂肪链,它们通常表现出较差的性能。在此,具有高度官能度和大量芳香结构的单宁酸(TA)被选作ESO的多酚固化剂,以制备具有高松弛温度和令人满意机械性能的全生物基EP热固性材料。作为一种天然的含2-取代咪唑的物质,组氨酸(H)在中等固化条件(120-180°C)下用作固化促进剂。该EP体系在运行时显示出高固化活性和良好的固化程度。发现固化的热固性材料具有热稳定性(>270°C),并显示出77°C的高松弛温度,拉伸强度为23MPa。初步附着力测试表明,固化产物在附着力失效模式下表现出约19MPa的高搭接剪切强度。考虑到这些优点,这种全生物基EP可为多种应用带来更多机会,例如用于结构材料和建筑胶粘剂。