Synthesis of zinc porphyrin complex for improving mechanical, UV-resistance, thermal stability and fire safety properties of polystyrene

卟啉 化学 热稳定性 聚苯乙烯 热分解 阻燃剂 分解 催化作用 核化学 有机化学 聚合物
作者
San‐E Zhu,Wenjie Yang,Yu Zhou,Wei-Hao Pan,Chunxiang Wei,Anthony Chun Yin Yuen,Timothy Bo Yuan Chen,Guan Heng Yeoh,Hongdian Lu,Wei Yang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:442: 136367-136367 被引量:39
标识
DOI:10.1016/j.cej.2022.136367
摘要

Polystyrene (PS) is one of the most commonly used general plastics. Nonetheless, PS is greatly limited by its inherent disadvantages such as high flammability, low stability and brittleness. To address these issues, 5,10,15,20-tetrakis(4-bromophenyl) porphyrin (TBPP) and zinc 5,10,15,20-tetrakis(4-bromophenyl) porphyrin (Zn-TBPP) were synthesized as multifunctional additives for fabricating high-performance PS composites. Both TBPP and Zn-TBPP showed high thermal stability and excellent UV-absorption, which significantly enhanced the UV-resistance of PS without sacrificing mechanical property after 100 h UV-aging. The addition of 5 wt% Zn-TBPP led to the remarkable improvement of thermal stability of PS (41 °C and 79 °C increases in the thermal decomposition temperature at 5 wt% mass loss under N2 and air, respectively). Moreover, contributed from the strong π-π interaction between porphyrins and PS chains, the mechanical properties of PS were enhanced when 5 wt% Zn-TBPP was added into PS (11.1% increase in tensile strength and 96.6% increase in elongation at break). Furthermore, compared to TBPP/PS, Zn-TBPP/PS exhibited an improved flame retardant performance with 26.0%, 14.4% and 31.5% reduction of peak heat release rate, peak CO and CO2 production respectively, indicating the catalytic flame retardant effect from zinc element.
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