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A Novel Organophosphorus Hybrid with Excellent Thermal Stability: Core Shell Structure, Hybridization Mechanism, and Application in Flame Retarding Semi-Aromatic Polyamide

机译:具有优异热稳定性的新型有机磷杂化物:核壳结构,杂交机理及其在阻燃半芳族聚酰胺中的应用

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摘要

An organophosphorous hybrid (BM@Al-PPi) with unique core-shell structure was prepared through hybridization reaction between boehmite (BM) as the inorganic substrate and phenylphosphinic acid (PPiA) as the organic modifier. Fourier transform infrared spectra (FTIR), solid state P-31 and Al-27 magic angle spinning nuclear magnetic resonance, X-ray diffraction, and element analysis were used to investigate the chemical structure of the hybrids, where the microrod-like core was confirmed as Al-PPi aggregates generated from the reaction between BM and PPiA, and those irregular nanoparticles in the shell belonged to residual BM. Compared with the traditional dissolution-precipitation process, a novel analogous suspension reaction mode was proposed to explain the hybridization process and the resulting product. Scanning electronic microscopy further proved the core-shell structure of the hybrids. BM exhibited much higher initial decomposition temperature than that of Al-PPi; therefore, the hybrid showed better thermal stability than Al-PPi, and it met the processing temperature of semiaromatic polyamide (HTN, for instance) as an additive-type flame retardant. Limiting oxygen index and cone calorimetric analysis suggested the excellent flame-retardant performance and smoke suppressing activity by adding the resulting hybrid into HTN.
机译:通过勃姆石(BM)作为无机底物与苯基次膦酸(PPiA)作为有机改性剂的杂交反应,制备了具有独特核壳结构的有机磷杂化物(BM @ Al-PPi)。傅立叶变换红外光谱(FTIR),固态P-31和Al-27幻角旋转核磁共振,X射线衍射和元素分析用于研究杂化体的化学结构,其中微棒状核为证实是由BM和PPiA之间的反应产生的Al-PPi聚集体,壳中那些不规则的纳米颗粒属于残留的BM。与传统的溶解-沉淀过程相比,提出了一种新型的相似悬浮反应模式来解释杂交过程和所得产物。扫描电子显微镜进一步证明了杂种的核壳结构。 BM的初始分解温度比Al-PPi高。因此,该杂化物显示出比Al-PPi更好的热稳定性,并且满足了作为添加剂型阻燃剂的半芳香族聚酰胺(例如HTN)的加工温度。极限氧指数和锥形量热分析表明,通过将所得的杂化物添加到HTN中,具有出色的阻燃性能和抑烟活性。

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