Song Lingxia, Meng Yeyun, Lv Peng, Liu Weiqu, Pang Hao
Guangzhou Institute of Chemistry, Chinese Academy of Sciences, Guangzhou 510650, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Polymers (Basel). 2021 Feb 28;13(5):750. doi: 10.3390/polym13050750.
The depletion of limited petroleum resources used for the fabrication of epoxy resins calls for the development of biomass-based epoxides as promising alternatives to petroleum-derived epoxides. However, it is challenging to obtain an epoxy resin with both high lignin content and excellent mechanical performance. Herein, a 4-dimethylaminopyridine (DMAP)-lignin epoxide with a certain epoxy value and a small molecular weight is obtained by the catalysis of DMAP for the macromolecular lignin. It was discovered that compared to the prepared composite resin of benzyltriethylammonium chloride (BTEAC)-lignin epoxide, there is a better low-temperature storage modulus for the DMAP-lignin epoxide resin and its composite resins with high-biomass contents, and higher tensile strength for its composite resins. In particular, the DMAP-lignin epoxide/ bisphenol A diglycidyl ether (BADGE) (DB) composite resin with DMAP-lignin epoxide replacement of 80 wt% BADGE, containing up to 58.0 wt% the lignin epoxide, exhibits the tensile strength of 76.3 ± 3.2 MPa. Its tensile strength is 110.2% of BTEAC-lignin epoxide/BADGE (BB) composite resins and is comparable to that of petroleum-based epoxy resins. There are good application prospects for the DB composite resin in the engineering plastics, functional composite, grouting, and other fields.
用于制造环氧树脂的有限石油资源的枯竭,促使人们开发基于生物质的环氧化合物,作为石油衍生环氧化合物的有前景的替代品。然而,要获得具有高木质素含量和优异机械性能的环氧树脂具有挑战性。在此,通过4-二甲氨基吡啶(DMAP)催化大分子木质素,获得了具有一定环氧值和小分子量的DMAP-木质素环氧化合物。研究发现,与苄基三乙基氯化铵(BTEAC)-木质素环氧化合物制备的复合树脂相比,DMAP-木质素环氧化合物树脂及其高生物质含量的复合树脂具有更好的低温储能模量,其复合树脂具有更高的拉伸强度。特别是,用DMAP-木质素环氧化合物替代80 wt%双酚A二缩水甘油醚(BADGE)的DMAP-木质素环氧化合物/双酚A二缩水甘油醚(BADGE)(DB)复合树脂,含有高达58.0 wt%的木质素环氧化合物,其拉伸强度为76.3±3.2 MPa。其拉伸强度是BTEAC-木质素环氧化合物/BADGE(BB)复合树脂的110.2%,与石油基环氧树脂相当。DB复合树脂在工程塑料、功能复合材料、灌浆等领域具有良好的应用前景。