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首页> 外文期刊>RSC Advances >Synthesis of a hydrogen-bonded complex intumescent flame retardant through supramolecular complexation and its application in LDPE foam
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Synthesis of a hydrogen-bonded complex intumescent flame retardant through supramolecular complexation and its application in LDPE foam

机译:超分子络合法合成氢键复合膨胀型阻燃剂及其在LDPE泡沫中的应用

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摘要

In this paper, a novel nitrogen–phosphorus hydrogen (H)-bonded complex intumescent flame retardant (IFR)-melamine (ME)?phosphoric acid (PA)?pentaerythritol (PER) (MPPR) was synthesized through a supramolecular complexation method by reacting a PA?PER H-bonded complex intermediate with ME. The PA?PER H-bonded complex intermediate was obtained by conducting an H-bonded complexation reaction between PA and PER in aqueous solution. FT-IR measurements and two-dimensional correlation infrared (2D IR) analysis were used to carefully investigate the PA?PER H-bonded complexation reaction and the related mechanism, and verify H-bond formation between PA and PER, of which the strength is different from that of PA and PER themselves. The results show that an appropriate PA/PER molar ratio could help to maintain the good solubility of PER in the system and the stability of the formed H-bonds. In addition, the reaction temperature proves to have a significant influence on H-bond formation in the system. 2D IR investigation indicates that in the full temperature range of 25–210 °C investigated, with increasing temperature, the formed H-bonds between PA and PER would be first broken to generate the free functional groups including P–O–H and C–O–H groups, which would then react with each other to form cyclized ester products at higher temperature than 150 °C. The obtained MPPR was finally incorporated into LDPE foam and imparted a good flame retardancy to the prepared foam, which is attributed to its good char forming capability and higher char yields.
机译:通过超分子络合反应,合成了一种新型的氮磷氢键合的复合膨胀型阻燃剂(IFR)-三聚氰胺(ME)-磷酸(PA)-季戊四醇(PER)(MPPR)。与ME形成PA?PER H键合的复杂中间体。通过在水溶液中PA和PER之间进行H键键合的配位反应,得到PA→PER H键键合的配位中间体。 FT-IR测量和二维相关红外(2D IR)分析用于仔细研究PA?PER H键络合反应及其相关机理,并验证PA和PER之间的H键形成,其强度为与PA和PER本身不同。结果表明,适当的PA / PER摩尔比可以帮助保持PER在体系中的良好溶解度和形成的H键的稳定性。此外,反应温度证明对体系中氢键的形成有重要影响。二维红外研究表明,在所研究的25–210°C的整个温度范围内,随着温度的升高,PA和PER之间形成的H键将首先被破坏,生成包括P–OH–和C–的自由官能团。 OH基团随后会在高于150°C的温度下彼此反应形成环化酯产物。最终将获得的MPPR掺入LDPE泡沫中,并赋予制得的泡沫良好的阻燃性,这归因于其良好的成炭能力和更高的炭收率。

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