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首页> 外文期刊>RSC Advances >Bio-inspired polydopamine-coated clay and its thermo-oxidative stabilization mechanism for styrene butadiene rubber
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Bio-inspired polydopamine-coated clay and its thermo-oxidative stabilization mechanism for styrene butadiene rubber

机译:仿生聚多巴胺涂层粘土及其对丁苯橡胶的热氧化稳定机理

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Polydopamine (PDA) is labeled as one category of synthetic melanin because it mimics the intriguing radical-scavenging behaviors of its natural counterpart. In this study, PDA modified montmorillonite (PDA-MMT) is utilized as a thermo-oxidative stabilizer for styrene butadiene rubber (SBR). PDA-MMT is fabricated by an aqueous dip-coating, based on the spontaneous alkaline auto-oxidative polymerization of dopamine hydrochloride in an air atmosphere, and is then associated with the SBR matrix via latex compounding. The PDA coating plays an excellent role as a radical-scavenger, and the uniformly dispersed PDA-MMT significantly functions as a physical barrier, which collaboratively work to reduce thermo-induced radical production during the decomposition process of SBR. This mechanism was attested by an in situ thermo-oxidative ageing test along with electron spin resonance (ESR) analysis. Thermal kinetics calculations showing that the apparent activation energy (Ea) of the SBR compounds is augmented by a large margin in the presence of PDA-MMT also corroborate this trend. Above all, the bio-inspired PDA-coating combined with the homogeneous dispersion of MMT exerts a synergistic effect on the thermo-oxidative stabilization of SBR matrix.
机译:聚多巴胺(PDA)被标记为合成黑色素的一类,因为它模仿其天然对应物的有趣的自由基清除行为。在这项研究中,PDA改性的蒙脱土(PDA-MMT)被用作丁苯橡胶(SBR)的热氧化稳定剂。 PDA-MMT通过在空气气氛中多巴胺盐酸盐的自发性碱性自氧化聚合反应的基础上,通过水性浸涂法制成,然后通过胶乳配混与SBR基质结合。 PDA涂层起自由基清除剂的作用,而均匀分散的PDA-MMT则起着物理屏障的作用,在SBR分解过程中,它们协同工作以减少热引发自由基的产生。通过原位热氧化老化测试以及电子自旋共振(ESR)分析证明了这一机理。热动力学计算表明,在PDA-MMT存在下,SBR化合物的表观活化能(Ea)大幅度增加,也证实了这一趋势。最重要的是,受生物启发的PDA涂层与MMT的均匀分散相结合,对SBR基体的热氧化稳定性起到了协同作用。

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