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The effect of transition metal stearates on the photodegradation of polyethylene

机译:过渡金属硬脂酸盐对聚乙烯光降解的影响

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AbstractThe effect of a series of transition metal (Ti, V, Cr, Mn, Fe, Co, Ni, Cu, Zn) stearates on the photodegradation of a high‐density polyethylene was examined mainly by changes in the carbonyl IR absorption of the sample films. Electron spin resonance (ESR) and luminescence spectra of the samples containing the copper stearate were measured. The photochemical reaction of the copper stearate was examined by IR and UV‐visible spectroscopies. The iron stearate was the most effective at an early stage of the photodegradation of the polymer, and vanadium and manganese stearates accelerated it, while the copper stearate retarded it. The other metal stearates showed no applicable effect on the photodegradation. The relative intensity of the ESR spectra of the photoirradiated samples and that of the emission spectra of the unirradiated samples at ca. 350 nm decreased with increasing concentration of the copper stearate. An absorption peak at 1580 cm−1decayed, and a new peak at 1740 cm−1appeared with photoirradiation of the copper stearate. Absorption peaks of the copper stearate at 252 and 665 nm decayed also rapidly with photoirradiation of the copper stearate in THF solution. The results suggest that one of the main retardative functions of the copper stearate in the photodegradation of polyethylene was an ultraviolet a
机译:摘要 主要通过样品膜羰基红外吸收的变化来研究一系列过渡金属(Ti、V、Cr、Mn、Fe、Co、Ni、Cu、Zn)硬脂酸盐对高密度聚乙烯光降解的影响。测量了含有硬脂酸铜的样品的电子自旋共振(ESR)和发光光谱。通过红外和紫外-可见光谱研究了硬脂酸铜的光化学反应。硬脂酸铁在聚合物光降解的早期阶段最有效,硬脂酸钒和硬脂酸锰加速了硬脂酸铁,而硬脂酸铜则延缓了硬脂酸铁。其他金属硬脂酸盐对光降解没有适用影响。随着硬脂酸铜浓度的增加,光辐照样品的ESR光谱和未辐照样品的发射光谱在约350 nm处的相对强度降低。在1580 cm−1处出现吸收峰衰减,在1740 cm−1处出现新峰,对硬脂酸铜进行光照射。硬脂酸铜在252和665 nm处的吸收峰也随着THF溶液中硬脂酸铜的光照射而迅速衰减。结果表明,硬脂酸铜在聚乙烯光降解中的主要延缓功能之一是紫外线

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