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The flame retardancy and smoke suppression effect of a hybrid containing dihydrogen phosphate anion modified reduced graphene oxide/layered double hydroxide on epoxy resin

机译:含磷酸二氢根阴离子改性的还原氧化石墨烯/层状双氢氧化物的混合物对环氧树脂的阻燃和抑烟作用

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A hybrid with MgAl-layered double hydroxide loaded graphene (RGO–LDH) was synthesized by a co-precipitation method, and then dihydrogen phosphate anion (H2PO4?) modified RGO–LDH hybrid (RGO–LDH/P) was prepared through an ion exchange method. X-ray diffraction, Fourier transform infrared spectra, and transmission electron microscope-energy-dispersive X-ray spectroscopy results showed that RGO–LDH/P was synthesized successfully. RGO–LDH/P was added into epoxy resin (EP) to investigate the effect on flame retardancy and smoke suppression. Results showed that the limit oxygen index and char yield of EP with RGO–LDH/P increased, reaching 24.8% and 19.7%, respectively, compared with EP. Meanwhile, peak heat release rate, total heat release, smoke production rate and total smoke production of the EP composite decreased by 37.9%, 30.6%, 27.5%, and 38.4%, respectively. Improved flame retardancy and smoke suppression were attributed to the physical barrier of graphene and LDH, and the catalytic carbonization effect of LDH. In addition, H2PO4? had a role in promoting carbonization and further improving flame retardancy and smoke suppression.
机译:通过共沉淀法合成了具有MgAl层的双氢氧化物负载石墨烯(RGO–LDH)的杂化物,然后生成磷酸二氢根阴离子(H 2 PO 通过离子交换法制备了 4 )修饰的RGO-LDH杂种(RGO-LDH / P)。 X射线衍射,傅立叶变换红外光谱和透射电子显微镜-能量色散X射线光谱结果表明RGO-LDH / P合成成功。将RGO-LDH / P添加到环氧树脂(EP)中以研究其对阻燃性和抑烟性的影响。结果表明,与EP相比,RGO-LDH / P的EP的极限氧指数和焦炭产率分别提高了24.8%和19.7%。同时,EP复合材料的峰值放热率,总放热,发烟率和总发烟量分别降低了37.9%,30.6%,27.5%和38.4%。阻燃性和抑烟性的提高归因于石墨烯和LDH的物理屏障,以及LDH的催化碳化作用。另外,H 2 PO 4 在促进碳化和进一步改善阻燃性和抑制烟雾方面发挥了作用。

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