Petrakova Viktoria V, Kireev Vyacheslav V, Onuchin Denis V, Sarychev Igor A, Shutov Vyacheslav V, Kuzmich Anastasia A, Bornosuz Natalia V, Gorlov Mikhail V, Pavlov Nikolay V, Shapagin Alexey V, Khasbiullin Ramil R, Sirotin Igor S
Faculty of Petroleum Chemistry and Polymeric Materials, Mendeleev University of Chemical Technology of Russia, Miusskaya Sq. 9, 125047 Moscow, Russia.
All-Russian Scientific Research Institute of Aviation Materials, 105275 Moscow, Russia.
Polymers (Basel). 2021 Apr 28;13(9):1421. doi: 10.3390/polym13091421.
To reveal the effect of chlorine substituents in the ring of aromatic amine on the synthesis process of benzoxazine monomer and on its polymerization ability, as well as to develop a fire-resistant material, a previously unreported benzoxazine monomer based on 3,3'-dichloro-4,4'-diaminodiphenylmethane was obtained in toluene and mixture toluene/isopropanol. The resulting benzoxazine monomers were thermally cured for 2 h at 180 °C, 4 h at 200 °C, 2 h at 220 °C. A comparison between the rheological, thermal and fire-resistant properties of the benzoxazines based on 3,3'-dichloro-4,4'-diaminodiphenylmethane and, for reference, 4,4'-diaminodimethylmethane was made. The effect of the reaction medium on the structure of the oligomeric fraction and the overall yield of the main product were studied and the toluene/ethanol mixture was found to provide the best conditions; however, in contrast to most known diamine-based benzoxazines, synthesis in the pure toluene is also possible. The synthesized monomers can be used as thermo- and fire-resistant binders for polymer composite materials, as well as hardeners for epoxy resins. Chlorine-containing polybenzoxazines require more severe conditions for polymerization but have better fire resistance.
为揭示芳香胺环上氯取代基对苯并恶嗪单体合成过程及其聚合能力的影响,以及开发一种耐火材料,在甲苯和甲苯/异丙醇混合物中制备了一种基于3,3'-二氯-4,4'-二氨基二苯甲烷的此前未报道的苯并恶嗪单体。将所得苯并恶嗪单体在180℃下热固化2小时、200℃下热固化4小时、220℃下热固化2小时。对基于3,3'-二氯-4,4'-二氨基二苯甲烷的苯并恶嗪以及作为参考的4,4'-二氨基二苯甲烷的流变学、热学和耐火性能进行了比较。研究了反应介质对低聚级分结构和主要产物总产率的影响,发现甲苯/乙醇混合物提供了最佳条件;然而,与大多数已知的基于二胺的苯并恶嗪不同,在纯甲苯中合成也是可行的。合成的单体可用作聚合物复合材料的耐热和耐火粘合剂,以及环氧树脂的固化剂。含氯聚苯并恶嗪聚合需要更苛刻的条件,但具有更好的耐火性。