阻燃剂
环氧树脂
缩水甘油醚
极限氧指数
材料科学
双酚A
单体
炭化
热固性聚合物
烧焦
高分子化学
化学
聚合物
化学工程
复合材料
燃烧
有机化学
工程类
作者
Young‐O Kim,Jaehyun Cho,Hyeonuk Yeo,Byoung Wan Lee,Byung Joon Moon,Yu‐Mi Ha,Ye Rin Jo,Yong Chae Jung
标识
DOI:10.1021/acssuschemeng.8b04851
摘要
Flame retardant epoxy is closely related to the safety of a human’s life against the surrounding fire threat. Flame retardant properties can be obtained by supplementing with additives, such as phosphorus compounds and nanomaterials, or synthesizing flame retardant monomers. The principle of improving flame retardancy is based on the capture of oxygen radicals and the formation of a char layer, which blocks flammable gases. This paper focuses on a flame retardant epoxy resin using naturally occurring tannic acid (TA) as a hardener, which is both an oxygen-radical quencher and a charring agent. TA is reacted with the commercially available diglycidyl ether of bisphenol A (DGEBA). The reaction between the epoxy ring of the DGEBA and multiple functional groups in TA is empirically demonstrated using dynamic scanning calorimetry (DSC) and Brillouin spectra. The most effective flame-retardant TA-DGEBA (TD) thermoset had an limiting oxygen index (LOI) value 46% higher than the control sample. This result suggests that TA-based epoxy resins could be promising flame-retardant polymers.
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