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Phosphorus/nitrogen compound and zinc hydroxystannate-modified graphene oxide for efficient flame retardancy and smoke suppression of epoxy resin

机译:磷/氮化合物和锌羟基锡酸改性氧化石墨烯在环氧树脂中高效阻燃抑烟

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摘要

Despite many important industrial applications, epoxy resin (EP) suffers from high flammability and toxicity emission. To circumvent the problem, phosphorus/nitrogen compound and zinc hydroxystannate-modified graphene oxide is successfully fabricated. The functionalized graphene (FGO) exhibits high thermal stability and excellent dispersity in the EP matrix. The storage modulus of EP/FGO2 increases to 2713 MPa from 2176 MPa. Meanwhile, the results show a significant reduction in fire, smoke, and toxicity hazards. Compared with pure EP, incorporating only 2.0 wt FGO2 into EP, smoke production rate, the peak heat release rate, and peak carbon monoxide production are dramatically reduced by 40.1, 40.3, and 37.7, respectively. Especially, the fire growth index of EP/FGO2 is reduced by 36.0. Moreover, the limiting oxygen index value of EP/FGO2 enhances to 28.5 and its UL-94 achieves V-1 rating. These superior fire safety properties are due to the catalytic, barrier effect of the FGO, the compact char blocks the diffusion of smoke and heat during combustion. This work provides an efficient strategy to prepare a promising graphene-based flame retardant to improve the fire safety and mechanical property of EP.
机译:尽管有许多重要的工业应用,但环氧树脂 (EP) 具有很高的可燃性和毒性排放。为了规避这一问题,成功制备了磷/氮化合物和锌羟基锡酸酯修饰的氧化石墨烯。功能化石墨烯(FGO)在EP基体中表现出高热稳定性和优异的分散性。EP/FGO2的储能模量从2176 MPa增加到2713 MPa。同时,结果显示火灾、烟雾和毒性危害显着降低。与纯EP相比,EP中仅掺入2.0 wt% FGO2,发烟率、峰值放热速率和峰值一氧化碳产量分别大幅降低40.1%、40.3%和37.7%。特别是EP/FGO2的火灾增长指数降低了36.0%。此外,EP/FGO2的极限氧指数值提高到28.5%,其UL-94达到V-1等级。这些优越的防火性能是由于FGO的催化、阻隔作用,致密的炭片阻止了燃烧过程中烟雾和热量的扩散。本工作为制备一种有前途的石墨烯基阻燃剂提供了一种有效的策略,以提高EP的防火安全性和力学性能。

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