Synthesis and Thermal Properties of Ethynyl Phenyl Azo Phenol-biphenylene Resin
Author(s) -
Zhihua Li,
Yujing Li,
Junjie Li,
Yuan Gao,
Xiaohong Gu
Publication year - 2019
Publication title -
acs omega
Language(s) - English
Resource type - Journals
ISSN - 2470-1343
DOI - 10.1021/acsomega.8b01590
Subject(s) - thermogravimetric analysis , curing (chemistry) , differential scanning calorimetry , biphenylene , gel permeation chromatography , polymer chemistry , materials science , phenol , biphenyl , fourier transform infrared spectroscopy , nuclear chemistry , thermal stability , chemistry , organic chemistry , polymer , chemical engineering , composite material , physics , phenylene , engineering , thermodynamics
A novel addition curing ethynyl phenyl azo phenol-biphenylene resin (EPABN) was synthesized by introducing ethynylphenyl group into biphenyl novolac resin (BN) through diazo coupling reaction. Its synthesis reaction and curing mechanism were also proposed. Fourier transform infrared spectroscopy and 1 H NMR spectroscopic analysis showed that the ethynylphenyl group was successfully linked to the BN molecular chain. By differential scanning calorimetry analysis, the curing process of EPABN resin was determined to be 150 °C/2 h + 172 °C/2 h + 203 °C/4 h + 255 °C/4 h + 300 °C/4 h. Gel permeation chromatography and elemental analysis showed that the introduction of ethynylphenyl group increased the number-average molecular weight and weight-average molecular weight of EPABN. Thermogravimetric analysis showed that the EPABN resin synthesized under the obtained optimum conditions has excellent heat resistance, ablation resistance, and mechanical properties. T d 5 and T d 10 of heat resistance of the cured EPABN resin are 463 and 531 °C, respectively, and its residual char yield at 700 and 1000 °C is 78.2% and 72.1%, respectively.
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