Abstract
Polybenzoxazine is a versatile polymer that has high thermal stability, high char yield and inherent flame-retardant properties. Increasing attention is being paid to the synthesis of bio-based benzoxazines using renewable materials. This is attributed to the availability of phenols and primary amines in their precursors and the ability to rival their petroleum-based counterparts. A protocol for cardanol-based benzoxazine synthesis from cardanol and hexamethylenetetramine was optimised for scalability. The cardanol-based benzoxazine was then mixed with ammonium polyphosphate (APP) in different ratios to achieve flame retardancy. The results suggested that increasing the APP/benzoxazine ratio improved its flame retardancy and improved the density and homogeneity of the char layer.
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CITATION STYLE
Huei, H. J., Jiali, W., Zhihao, Y., Xingchi, X., Mohd Kamdi, A. H. F. bin, Gonçalves, R. A., & Wei Tat, L. N. (2026). Cardanol-based benzoxazine and its potential with ammonium polyphosphate in flame-retardant coatings. Materials Advances, 7(8), 4118–4127. https://doi.org/10.1039/d5ma01299f
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