Fan Wang-Xi, Li Zefang, Yang Zhou, Ou Jun-Fei, Xiang Meng, Qin Zhong-Li
School of Materials Engineering, Jiangsu University of Technology Changzhou China.
School of Computer Engineering, Jiangsu University of Technology Changzhou China.
RSC Adv. 2022 May 6;12(22):13756-13764. doi: 10.1039/d1ra08843b. eCollection 2022 May 5.
Novel star-like molecules containing P, N and Si with dual functions of flame retardance and curing promotion (abridged as HCCP-KH540) were successfully synthesized through the nucleophilic substitution reaction of hexachlorocyclotriphosphazene (HCCP) and 3-aminopropyltrimethoxysilane (KH540). HCCP-KH540 was incorporated with the matrix of epoxy resin (EP) to form a flame retardant composite abridged as E-HK. The activation energy of the curing reaction of the E-HK composite was reduced but the curing reaction rate was accelerated by HCCP-KH540. The E-HK composite with 30 phr content of HCCP-KH540 exhibited excellent flame retardancy with limiting oxygen index of 29.6% and V-1 rating in the vertical burning test as well as excellent thermal stability with a char yield of 23.77% at 700 °C, compared with only 8.64% for pure EP.
通过六氯环三磷腈(HCCP)与3-氨丙基三甲氧基硅烷(KH540)的亲核取代反应,成功合成了具有阻燃和促进固化双重功能的新型含磷、氮、硅星状分子(简称为HCCP-KH540)。将HCCP-KH540与环氧树脂(EP)基体复合,形成了一种阻燃复合材料,简称为E-HK。HCCP-KH540降低了E-HK复合材料固化反应的活化能,但加快了固化反应速率。含30份HCCP-KH540的E-HK复合材料具有优异的阻燃性能,极限氧指数为29.6%,垂直燃烧试验中达到V-1等级,同时具有出色的热稳定性,在700℃时残炭率为23.77%,而纯EP仅为8.64%。