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首页> 外文期刊>New Journal of Chemistry >Replacing bisphenol-A with bisguaiacol-F to synthesize polybenzoxazines for a pollution-free environment
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Replacing bisphenol-A with bisguaiacol-F to synthesize polybenzoxazines for a pollution-free environment

机译:用比邻愈创木酚-F代替双酚A,合成聚苯并恶嗪,实现了无污染的环境

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In recent years, bisguaiacol F (BGF) is considered as a green alternative to bisphenol A (BPA). The present work deals with the synthesis of BGF and BGF-based benzoxazines, viz., bis[(3-(furan-2-yl) methyl)-3,4-dihydro-2H benzoxazin-6-yl] methane and bis[(3-octadecyl)-3,4-dihydro-2H benzoxazin-6yl] methane, as an alternative to BPA and polybenzoxazines derived from BPA. A solventless method was adopted for the synthesis of BGF and the benzoxazine monomers. The structure and purity of BGF is confirmed by FT-IR, NMR (H-1 and C-13), MS and GC. The monomers were polymerized via ring opening polymerization by heating as shown by FT-IR (disappearance of the peak due to the oxazine ring at 933 cm(-1)). Differential scanning calorimetric (DSC) analysis of the monomers shows a wide range of processability between 77 and 122 degrees C. Thermal properties of the furfurylamine based polybenzoxazine (BGF-FPbz) and stearylamine based polybenzoxazine (BGF-SPbz) were investigated by thermogravimetric analysis (TGA). The results indicate that BGF-FPbz shows the maximum thermal stability when compared with BGF-SPbz. Both the polymers exhibit good flame retardant properties as shown by their LOI values (more than 26).
机译:近年来,bisguaiacol F(BGF)被认为是双酚A(BPA)的绿色替代品。本工作涉及BGF和基于BGF的苯并恶嗪的合成,即双[((3-(呋喃-2-基)甲基)-3,4-二氢-2H苯并恶嗪-6-基]]甲烷和双[ (3-十八烷基)-3,4-二氢-2H苯并恶嗪-6yl]甲烷,可替代BPA和衍生自BPA的聚苯并恶嗪。采用无溶剂方法合成BGF和苯并恶嗪单体。 BFT的结构和纯度通过FT-IR,NMR(H-1和C-13),MS和GC确认。单体通过开环聚合反应通过加热聚合,如FT-IR(由于在933 cm(-1)处的恶嗪环引起的峰消失)所示。单体的差示扫描量热(DSC)分析显示了77至122摄氏度之间的广泛可加工性。通过热重分析研究了糠胺基聚苯并恶嗪(BGF-FPbz)和硬脂胺基聚苯并恶嗪(BGF-SPbz)的热性能( TGA)。结果表明,与BGF-SPbz相比,BGF-FPbz显示出最大的热稳定性。两种聚合物均表现出良好的阻燃性能,如其LOI值(大于26)所示。

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