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Novel Phosphorus-Nitrogen-Containing Ionic Liquid Modified Metal-Organic Framework as an Effective Flame Retardant for Epoxy Resin

机译:新型含磷氮离子液体改性的金属有机骨架作为环氧树脂的有效阻燃剂

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摘要

Metal-organic frameworks (MOFs) have shown great potential in flame retardant applications; however, strategies for fully exploiting the advantages of MOFs in order to further enhance the flame retardant performance are still in high demand. Herein, a novel MOF composite was designed through the generated cooperative role of MOF (NH -MIL-101(Al)) and a phosphorus-nitrogen-containing ionic liquid ([DPP-NC bim][PMO]). The ionic liquid (IL) was composed of imidazole cation modified with diphenylphosphinic group (DPP) and phosphomolybdic acid (PMoA) anions, which can trap the degrading polymer radicals and reduce the smoke emission. The MOF acts as a porous host and can avoid the agglomeration of ionic liquid. Meanwhile, the -NH groups of NH -MIL-101(Al) can increase the compatibility with epoxy resin (EP). The framework is expected to act as an efficient insulating barrier to suppress the flame spread. It was demonstrated that the MOF composite (IL@NH -MIL-101(Al)) is able to effectively improve the fire safety of EP at low additions (3 wt. %). The LOI value of EP/IL@NH -MIL-101(Al) increased to 29.8%. The cone calorimeter results showed a decreased heat release rate (51.2%), smoke production rate (37.8%), and CO release rate (44.8%) of EP/IL@NH -MIL-101(Al) with respect to those of neat EP. This strategy can be extended to design other advanced materials for flame retardant.
机译:金属有机骨架(MOF)在阻燃剂应用中显示出巨大的潜力。但是,仍然需要充分利用MOF的优点以进一步提高阻燃性能的策略。在此,通过MOF(NH -MIL-101(Al))和含磷氮离子液体([DPP-NC bim] [PMO])的协同作用,设计了一种新型MOF复合材料。离子液体(IL)由二苯次膦基(DPP)改性的咪唑阳离子和磷钼酸(PMoA)阴离子组成,可捕获降解的聚合物自由基并减少烟气排放。 MOF充当多孔主体,可以避免离子液体的团聚。同时,NH -MIL-101(Al)的-NH基团可以增加与环氧树脂(EP)的相容性。该框架有望充当抑制火焰蔓延的有效隔热屏障。结果表明,MOF复合材料(IL @ NH -MIL-101(Al))能够在低添加量(3 wt。%)下有效提高EP的防火性。 EP / IL @ NH -MIL-101(Al)的LOI值增加到29.8%。锥形量热仪的结果表明,与纯净的相比,EP / IL @ NH -MIL-101(Al)的放热率(51.2%),发烟率(37.8%)和CO释放率(44.8%)降低。 EP该策略可以扩展为设计其他先进的阻燃材料。

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