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首页> 外文期刊>Composites. B, Engineering >Enhancing performance of phosphorus containing vanillin-based epoxy resins by P-N non-covalently functionalized graphene oxide nanofillers
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Enhancing performance of phosphorus containing vanillin-based epoxy resins by P-N non-covalently functionalized graphene oxide nanofillers

机译:通过P-N非共价官能化的石墨烯氧化物纳米氧化物增强含有Vanillin基环氧树脂的磷的性能

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摘要

In this study, non-covalently functionalized graphene oxide (FGO) containing phosphorus and nitrogen was synthesized using dibenzyl N,N' -diethyl phosphoramidite (DDP) via a single step process. Meanwhile, novel biobased phosphorus containing vanillin epoxy resin (VPE) was made via a two-step process and used as a flame-retardant adhesive. Subsequently, FGO was dispersed in the epoxy resin matrix at different weight ratios as reinforcement for improving mechanical, thermal and flame-retardant properties of the resultant composite systems. Curing behavior of the VPE and FGO mixtures with 4,4'-diaminodiphenylsulfone (DDS) as the crosslinker was investigated using a Differential Scanning Calorimeter (DSC). Thermal and flame-retardant properties of the cured VPE/FGO nanocomposites were systematically investigated by Thermogravimetric Analysis (TGA), Gas Chromatography - Mass Spectrometry (GC-MS), Limited Oxygen Index (LOI), vertical burning test (UL-94), and cone calorimeter test. Results indicated that all VPE/FGO nanocomposites exhibited excellent thermal and flame-retardant properties. In particular, VPE with 9 wt% of FGO achieved the highest LOI value (29.1%) and passed the V-0 rating in the UL-94 test. Furthermore, cone calorimetry test showed that flame retardancy performance of the VPE and VPE/FGO composites significantly improved compared to vanillin epoxy control resin without phosphorus. The gaseous and high boiling pyrolysis products of VPE cured by DDS were collected and characterized by GC/MS to reveal their formation mechanisms. The char layers of the cued VPE showed a high oxidation resistance with intumescent structures. The combined barrier and quenching effects of the char layer imparted VPE with excellent flame retardancy. This study illustrated a promising approach for synthesizing mechanically strong, thermally-stable and environmentally-friendly flame-retardant bio-based composite resins.
机译:在该研究中,通过单步工艺使用二苄基N,N'-二乙基磷酰胺(DDP)合成含有磷和氮的非共价官能化的石墨烯氧化物(FGO)。同时,通过两步法制备含有香草蛋白环氧树脂(VPE)的新型生物化磷,并用作阻燃粘合剂。随后,在不同重量比中以不同重量比分散在环氧树脂基质中,作为改善所得复合系统的机械,热和阻燃性能的增强。使用差示扫描量热仪(DSC)研究了用4,4'-二氨基二苯基砜(DDS)的VPE和FPO混合物的固化行为。通过热重分析(TGA),气相色谱 - 质谱(GC-MS),有限氧指数(LOI),垂直燃烧试验(UL-94),系统地研究了固化的VPE / FPO纳米复合材料的热和阻燃性能。和锥形量热计测试。结果表明,所有VPE / FPO纳米复合材料都表现出优异的热和阻燃性能。特别地,具有9wt%FGO的VPE实现了最高的LOI值(29.1%)并通过了UL-94测试中的V-0等级。此外,与没有磷的香草素环氧树脂对照树脂相比,锥形量热法试验表明,与Vanillin环氧树脂对照树脂相比,VPE和VPE / FPO复合材料的阻燃性能显着改善。收集DDS固化的VPE的气态和高沸点热解产物,并通过GC / MS表征,露出其形成机制。 CUED VPE的炭层显示出具有膨胀型结构的高抗氧化性。 Char层的组合屏障和淬火效果赋予VPE具有优异的阻燃性。本研究说明了一种合成机械强,热稳态和环保的阻燃生物基复合树脂的有希望的方法。

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  • 来源
    《Composites. B, Engineering》 |2021年第15期|108585.1-108585.12|共12页
  • 作者单位

    Univ Toronto Dept Chem Engn & Appl Chem 200 Coll St Toronto ON M5S 3E5 Canada;

    Univ Toronto Dept Chem Engn & Appl Chem 200 Coll St Toronto ON M5S 3E5 Canada;

    Univ Toronto Inst Forestry & Conservat 33 Willcocks St Toronto ON M5S 3B3 Canada;

    FP Innovat Wood Prod Div 2665 East Mall Vancouver BC V6T 1W5 Canada;

    Univ Toronto Dept Chem Engn & Appl Chem 200 Coll St Toronto ON M5S 3E5 Canada|Univ Toronto Inst Forestry & Conservat 33 Willcocks St Toronto ON M5S 3B3 Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vanillin epoxy; Flame retardancy; FGO; Thermal properties; Cone calorimetry;

    机译:香草蛋白环氧树脂;阻燃性;FPO;热性质;锥形量热法;

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