Institute of Chemical Industry of Forest Products, Chinese Academy of Forestry, National Engineering Laboratory for Biomass Chemical UtilizationNanjing 210042, China.
College of Materials Science and Technology, Beijing Forestry University, Beijing 100083, China.
J Agric Food Chem. 2021 Aug 18;69(32):9338-9349. doi: 10.1021/acs.jafc.1c01885. Epub 2021 Aug 4.
The poor mechanical properties and disadvantages of catalysts limit the application of self-healing materials. To address these issues, catalyst-free self-healing bio-based polymers (AESO-EMPA polymers) with robust mechanical properties were prepared using epoxidized maleopimaric anhydride (EMPA) and aminated epoxidized soybean oil (AESO). The AESO-EMPA polymers are recyclable and exhibit self-healing and shape memory because of the dual-dynamic network of multiple H-bonds and dynamic ester bonds in the structure. Under the synergistic catalysis of the tertiary amines and hydroxyl groups originated from the polymers, the polymers in this study achieve network rearrangement without the need for additional catalysts. The polymers also exhibit excellent mechanical properties with a tensile strength of 29.1 ± 0.25 MPa and a of 80.2 °C owing to the unique rigid backbone of rosin and the dual-dynamic network. The AESO-EMPA polymers can be used as reusable adhesives and exhibit excellent shear strength and repair rates.
较差的机械性能和催化剂的缺点限制了自修复材料的应用。为了解决这些问题,使用马来海松酸酐(EMPA)和氨基环氧大豆油(AESO)制备了具有强机械性能的无催化剂自修复生物基聚合物(AESO-EMPA 聚合物)。由于结构中存在多重氢键和动态酯键的双重动态网络,AESO-EMPA 聚合物是可回收的,并具有自修复和形状记忆功能。在聚合物中叔胺和羟基产生的协同催化作用下,无需额外的催化剂即可实现聚合物的网络重排。由于松香独特的刚性骨架和双重动态网络,该聚合物具有 29.1±0.25 MPa 的拉伸强度和 80.2°C 的玻璃化转变温度,表现出优异的机械性能。AESO-EMPA 聚合物可用作可重复使用的粘合剂,表现出优异的剪切强度和修复率。