高分子材料老化的激光质谱、紫外可见光谱和环境扫描电镜研究

J. Exposito, C. Becker, D. Ruch, F. Aubriet
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引用次数: 7

摘要

为室外应用而设计的染色天然橡胶(NR)和丁苯橡胶(SBR)暴露在氙灯下加速人工老化。老化导致暴露表面材料性能的恶化。染色聚合物经受长时间阳光照射而不褪色或发生任何物理劣化的能力在很大程度上不仅取决于吸收染料本身的光化学特性,还取决于聚合物结构和填料。激光质谱、紫外可见光谱和环境扫描电镜的结果表明,染色填充的NR和SBR样品在光氧化过程中的表现不同。发现在NR样品中,染色聚合物的褪色得到了促进。这可能与LDI-FTICRMS结果相关,LDI-FTICRMS结果显示老化后[M-H]−橙色色素假分子离子及其片段离子的缺失。EDX和紫外/可见光谱证实了这一点。EDX分析表明,氯原子的浓度可以被认为是橙色颜料或其降解产物的标志,只有在SBR地板老化后的表面。在地板老化过程中形成的自由基的反应性已被研究,似乎很大程度上影响了这类有机颜料的行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Polymer Material Aging by Laser Mass Spectrometry, UV-Visible Spectroscopy, and Environmental Scanning Electron Microscopy
Dyed natural rubber (NR) and styrene butadiene rubber (SBR), designed for outdoor applications, were exposed to an accelerated artificial aging in xenon light. The aging results in the deterioration of the exposed surface material properties. The ability of dyed polymers to withstand prolonged sunlight exposure without fading or undergoing any physical deterioration is largely determined not only by the photochemical characteristics of the absorbing dyestuff itself but also by the polymer structure and fillers. Results obtained by laser mass spectrometry, UV-visible spectroscopy, and environmental scanning electron microscopy indicate that dyed filled NR and SBR samples behave differently during the photo-oxidation. The fading of the dyed polymers was found to be promoted in the NR sample. This can be correlated with LDI-FTICRMS results, which show the absence of [M-H]− orange pigment pseudomolecular ion and also its fragment ions after aging. This is confirmed by both EDX and UV/Vis spectroscopy. EDX analysis indicates a concentration of chlorine atoms, which can be considered as a marker of orange pigment or its degradation products, only at the surface of SBR flooring after aging. Reactivity of radicals formed during flooring aging has been studied and seems to greatly affect the behavior of such organic pigments.
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