Jamrozik Artur, Barczewski Mateusz, Framski Grzegorz, Baranowski Daniel, Jakubowska Paulina, Klapiszewski Łukasz, Jesionowski Teofil, Voelkel Adam, Strzemiecka Beata
Institute of Chemical Technology and Engineering, Faculty of Chemical Technology, Poznan University of Technology, Berdychowo 4, PL-60965 Poznan, Poland.
Institute of Materials Technology, Faculty of Mechanical Engineering, Poznan University of Technology, Piotrowo 3, PL-61138 Poznan, Poland.
Materials (Basel). 2020 Jul 5;13(13):2995. doi: 10.3390/ma13132995.
A series of cresol-based benzoxazines were synthesized for potential application as a polymer matrix in abrasive composites. The chemical structures of the obtained benzoxazine resins were investigated in detail using Fourier transform infrared spectroscopy (FTIR) and hydrogen-1 as well as carbon-13 nuclear magnetic resonance spectroscopy (H NMR, C NMR) with an additional analysis using two-dimensional NMR techniques (2D NMR H-H COSY, H-C gHSQC and gHMBC). Structural analysis confirmed the presence of vibrations of -O-C-N- at ~950 cm wavenumber, characteristic for an oxazine ring. The thermal properties of benzoxazine monomers were examined using differential scanning calorimetry (DSC) analysis. The polymerization enthalpy varied from 143.2 J/g to 287.8 J/g. Thermal stability of cresol-based benzoxazines was determined using thermogravimetry (TGA) analysis with additional analysis of the amount of volatile organic compounds (VOC) emitted from the synthesized benzoxazines during their crosslinking by static headspace coupled with gas chromatography technique (HS-GC). The amount of residual mass significantly differed between all synthesized polybenzoxazines in the range from 8.4% to 21.2%. The total VOC emission for benzoxazines decreased by 46-77% in reference to a conventional phenolic binder. The efficiency of abrasive composites with the benzoxazine matrix was evaluated based on abrasion tests. Performed analyses confirmed successful synthesis and proper chemical structure of cresol-based benzoxazines. All the experiments indicated that benzoxazines based on different cresol isomers significantly differ from each other. Good thermal performance and stability of the abrasive composites with the polybenzoxazine matrix and significantly lower VOC emission allow us to state that benzoxazines can be a promising and valuable alternative to the phenolics and a new path for the development of modern, eco-friendly abrasives.
合成了一系列基于甲酚的苯并恶嗪,用于作为磨料复合材料中的聚合物基体的潜在应用。使用傅里叶变换红外光谱(FTIR)、氢-1以及碳-13核磁共振光谱(¹H NMR、¹³C NMR)详细研究了所得苯并恶嗪树脂的化学结构,并使用二维核磁共振技术(二维¹H-¹H COSY、¹H-¹³C gHSQC和gHMBC)进行了额外分析。结构分析证实了在约950 cm波数处存在恶嗪环特有的-O-C-N-振动。使用差示扫描量热法(DSC)分析研究了苯并恶嗪单体的热性能。聚合焓在143.2 J/g至287.8 J/g之间变化。使用热重分析法(TGA)测定了基于甲酚的苯并恶嗪的热稳定性,并通过静态顶空与气相色谱技术(HS-GC)联用,对合成的苯并恶嗪在交联过程中释放的挥发性有机化合物(VOC)量进行了额外分析。所有合成的聚苯并恶嗪的残留质量在8.