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Thermal-Initiating Potentialities of Poly(methyl methacrylate) Peroxide: Metamorphosis of Block-into-Block Copolymer and Comparative Studies on Surface Texture and Morphology

机译:聚(甲基丙烯酸甲酯)过氧化物的热引发潜能:嵌段共聚物的变态作用及表面织构和形貌的比较研究

摘要

This is the first report concerning the use of vinyl polyperoxide, namely, poly(methyl methacrylate) peroxide (PMMAP), as a thermal initiator for the synthesis of active polymer PMMAP-PS-PMMAP by free-radical polymerization with styrene. The polymerizations have been carried out at different concentrations of macroinitiator PMMAP. The active polymers have been characterized by 1HNMR, DSC, thermogravimetric analysis, and gel permeation chromatography. PMMAP-PS-PMMAP is further used as the thermal macroinitiator for the preparation of another block copolymer, PMMA-b-PS-b- PMMA, by reacting the active polymers with methyl methacrylate. The block copolymers have been synthesized by varying the concentrations of the active polymers. The mechanismof block copolymers has been discussed, which is also supported by thermochemical calculations. Studies on the surface texture and morphology of the block copolymer of polystyrene (PS) and PMMA material have been carried out using scanning electron microscopy. Furthermore, in this article, a blend of the same constituent materials (PS and PMMA) in proportions (v/v) similar to that contained in block copolymers has been formulated, and the morphology and surface textures of these materials were also investigated. A comparative microscopical evaluation between two processing methods was done for a better understanding of the processing route dependence of the microstructures.
机译:这是有关使用乙烯基过氧化物,即聚(甲基丙烯酸甲酯)过氧化物(PMMAP)作为热引发剂通过苯乙烯自由基聚合合成活性聚合物PMMAP-PS-PMMAP的报道。聚合反应已在不同浓度的大分子引发剂PMMAP下进行。活性聚合物已通过1 HNMR,DSC,热重分析和凝胶渗透色谱法进行了表征。 PMMAP-PS-PMMAP还用作热大分子引发剂,通过使活性聚合物与甲基丙烯酸甲酯反应来制备另一种嵌段共聚物PMMA-b-PS-b-PMMA。通过改变活性聚合物的浓度已经合成了嵌段共聚物。讨论了嵌段共聚物的机理,这也得到热化学计算的支持。聚苯乙烯(PS)和PMMA材料的嵌段共聚物的表面纹理和形态的研究已经使用扫描电子显微镜进行。此外,在这篇文章中,已经配制了相同成分材料(PS和PMMA)的比例(v / v)类似于嵌段共聚物中所包含的共混物,并且还研究了这些材料的形貌和表面纹理。为了更好地了解微结构的加工路径依赖性,对两种加工方法进行了比较显微镜评估。

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    Nanda Ajaya K; Kishore *;

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  • 年度 2001
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