Influence of Ionic Liquid-Based Metal–Organic Hybrid on Thermal Degradation, Flame Retardancy, and Smoke Suppression Properties of Epoxy Resin Composites

被引:0
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作者
Fei Xiao
Kun Wu
Fubin Luo
Sa Yao
Maoping Lv
Haimei Zou
Mangeng Lu
机构
[1] Chinese Academy of Sciences,Key Laboratory of Cellulose and Lignocellulosics Chemistry, Guangzhou Institute of Chemistry
[2] University of Chinese Academy of Sciences,undefined
来源
Journal of Materials Science | 2018年 / 53卷
关键词
Smoke Suppression Properties; Flame Retardants; Peak Heat Release Rate (PHRR); Char Layer; Phosphonium-based Ionic Liquids;
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摘要
A new multifunctional ionic liquid-based metal–organic hybrid (PMAIL) was synthesized by anion exchange between as-synthesized phosphonate-based ionic liquid and phosphomolybdic acid and applied to epoxy resin (EP) as an efficient flame retardant. As expected, with only 1 wt% addition of PMAIL, the char yield of EP-PMAIL1 composite at 700 °C was significantly improved by 108.3% from 12.0% for neat epoxy resin to 25.0%, demonstrating the outstanding catalytic charring effect of PMAIL. Meanwhile, EP-PMAIL6 composite (6 wt% addition) can reach V-0 rating in the UL-94 vertical burning tests easily, and its peak heat release rate and total smoke production of EP-PMAIL6 were dropped by 31.0 and 15.4%, respectively, compared with neat EP. Moreover, the results from cone calorimetry tests showed that the char yield of EP-PMAIL6 was enhanced by 162% from 9.5 to 24.9% compared with neat EP, resulting in a strong intumescent char layer structure with outstanding fire retardance and mechanical properties. The thermo-oxidative stable protective layer retarded the transfer of heat and flammable volatiles during combustion and protected the epoxy matrix from further degradation. In conclusion, our results might provide a new perspective for producing composites with excellent flame retardancy and smoke suppression properties using ionic liquid-based metal–organic hybrid.
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页码:10135 / 10146
页数:11
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