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A truly bio-based benzoxazine derived from three natural reactants obtained under environmentally friendly conditions and its polymer properties

机译:一种真正的生物基苯并恶嗪衍生自在环保条件下获得的三种天然反应物及其聚合物性质

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摘要

The majority of the published bio-based benzoxazine research has focused almost exclusively on different phenolic and amine compounds, while the aldehyde portion of the oxazine ring remains the same. These materials have been labeled as fully bio-based even though only two of the three raw materials are derived from renewable resources. In this study, we synthesize a truly bio-based benzoxazine in which all three reactants necessary to synthesize a benzoxazine are from renewable sources for the first time. The bio-originated compounds sesamol, furfurylamine, and benzaldehyde are used to synthesize a truly bio-based benzoxazine by a solventless method. Unlike almost all 1,3-benzoxazine resins reported in the literature thus far, the current paper reports oxazine ring-substituted benzoxazines, further providing a great opportunity for the molecular design flexibility of benzoxazine resins over the already very rich variation of 1,3-benzoxazine compounds. The structure of the 7-(furan-2-ylmethyl)-6,8-diphenyl-7,8-dihydro-6H-[1,3]dioxolo[4 ',5 ':3,4]benzo[1,2-e][1,3]oxazine monomer is characterized by Fourier transform infrared (FT-IR) spectroscopy, Raman spectroscopy, and 1D and 2D H-1 and C-13 nuclear magnetic resonance spectroscopy. The polymerization behavior of the benzoxazine monomer is studied by differential scanning calorimetry (DSC), and the thermal stability of the polybenzoxazine is evaluated by thermogravimetric analysis (TGA). The corresponding polymer has a high thermal stability with 5% and 10% weight loss temperatures of 317 and 332 degrees C, respectively, a char yield of 46%, and a heat release capacity of 201 J g(-1) k(-1). Polymers that show a high char yield, a high degradation temperature and a heat release capacity below 300 kJ g(-1) are considered good anti-flammable materials.
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著录项

  • 来源
    《Green chemistry》 |2021年第11期|共14页
  • 作者单位

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

    Univ Buenos Aires CIHIDECAR CONICET Dept Quim Organ Fac Ciencias Exactas &

    Nat Pabellon II 3er Piso Ciudad Univ Buenos Aires DF Argentina;

    Univ Buenos Aires Design &

    Chem Macromol Grp Inst Technol Polymers &

    Nanotechnol ITPN UBA CONICET FADU Pabellori III Subsuelo Ciudad Univ Buenos Aires DF Argentina;

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

    Hathaway Brown Sch Shaker Hts OH 44122 USA;

    Univ Fed Rio de Janeiro Sch Chem Rua Horacio Macedo 2030 Cidade Univ BR-21941909 Rio De Janeiro RJ Brazil;

    Case Western Reserve Univ Dept Macromol Sci &

    Engn 10900 Euclid Ave Cleveland OH 44106 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;数理科学和化学;化学工业废物处理与综合利用;
  • 关键词

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