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Radiation Induced Double Grafting of Polybutadiene Olygomers and Styrene onto Silica: Characterization of the Materials and Mechanistic Studies

机译:辐射诱导的聚丁二烯低聚物和苯乙烯在硅胶上的双接枝:材料表征和机理研究

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摘要

Ionizing radiations from a 60-Co source have been employed for inducing radical reactions finally leading to the grafting of unsaturated olygomers and vinyl monomers onto the surface and micropores of precipitated silica Zeosil 1165 (150–170 m2/g). The target was to obtain modified silica with enhanced polar compatibility with respect to polybutadiene and styrene-butadiene copolymers rubber matrices and suited to favour the formation of chemically bound rubber in a vulcanization process. The latter property was expected to follow from the characteristics of free radical reactivity arising from the unsaturations present in the organic coating. Three classes of modified silica have been prepared: A)silica coated with polybutadiene olygomers with Mn in the range 1000–5000 and having a different relative content of 1,4-cis, 1,4-trans and vinyl double bonds 1,2; B)Silica coated with polybutadiene olygomers further modified by subsequent grafting of styrene monomer. The type A samples were obtained by irradiation under vacuum of silica samples pre-impregnated with the oligomers in the dose range up to 30–200 kGy. Type B samples were obtained via three different steps as outlined in the scheme below: The characterization of the modified silica was carried on by elemental and thermogravimetric analysis, FTIR (diffuse reflectance), Raman spectroscopy, inverse gas chromatography (IGC), CP/MAS 29-Si NMR, granulometry and TEM microscopy.
机译:60 Co离子源的电离辐射已用于引发自由基反应,最终导致不饱和低聚物和乙烯基单体接枝到沉淀的二氧化硅Zeosil 1165(150-170 m 2 / G)。目标是获得相对于聚丁二烯和苯乙烯-丁二烯共聚物橡胶基体具有增强的极性相容性并且适合于在硫化过程中形成化学结合的橡胶的改性二氧化硅。从有机涂料中存在的不饱和度引起的自由基反应性的特性,可以预期后一种性质。制备了三类改性二氧化硅:A)涂有M n 在1000-5000范围内且相对含量不同的1,4-顺式,1,4-反式的聚丁二烯低聚物的二氧化硅乙烯基双键1,2; B)用聚丁二烯低聚物涂覆的二氧化硅,其通过随后接枝苯乙烯单体进一步改性。 A型样品是通过在真空下辐照预浸渍了低聚物的二氧化硅样品(剂量范围高达30–200 kGy)获得的。通过以下方案中概述的三个不同步骤获得B型样品:改性二氧化硅的表征通过元素和热重分析,FTIR(漫反射),拉曼光谱,反相气相色谱法(IGC),CP / MAS进行29-Si NMR,粒度分析和TEM显微镜。

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