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首页> 外文期刊>Polymer chemistry >The formation and study of poly(ethylene oxide)-poly(norbornene) block-copolymers on the surface of titanium-dioxide particles: a novel approach towards application of si-ROMP to larger surface modification
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The formation and study of poly(ethylene oxide)-poly(norbornene) block-copolymers on the surface of titanium-dioxide particles: a novel approach towards application of si-ROMP to larger surface modification

机译:的形成和研究聚(乙烯氧化)聚(norbornene)嵌段共聚物表面的二氧化钛粒子:一本小说方法对应用si-ROMP大表面改性

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摘要

Ring-opening metathesis polymerization, or ROMP, has been known in the world of polymers as a success story. With its discovery in the middle of the 20th century, the study and understanding of this reaction led to its adoption in a multitude of areas in both academic and industrial domains. However, with the general shift towards hybrid materials and better material integration, surface-initiated polymerization (SIP) has been an area of great interest that ROMP has only tapped into at the very end of the 20th century. With this point in mind, we demonstrate another pathway towards SIP using the si-ROMP approach to form block-copolymers of poly(ethylene-oxide)-poly(norbornene) (PEO-PNB) brushes on particles of titania. In this study, particle modification was first performed and studied, which was then applied towards coating larger, curved tubes to assess their ability for surface modification. In the case of particles, each step was analyzed by XPS to ensure that the expected elements appeared. TGA was then implemented to determine the general grafting density of the PEO chains on the surface, which was found to be 2.7 molecules per nm(2). TGA could also determine the degree of polymerization (DP) of the polynorbornene chain, which was 12 500. Finally, SEM was used to image the final products, both film formation using particles, and after use of these particles as a surface coating to cover larger surface areas for surface modification. The functionalized titania particles are determined to be an interesting candidate material for a "seed" layer, which can be used for larger surface modification.
机译:开环复分解聚合或玩耍,一直在聚合物的世界被称为成功的故事。20世纪初,研究和理解这个反应导致其采用的在学术和众多的地区工业领域。转向混合材料和更好材料集成,表面聚合(SIP)一直是一个大的领域兴趣,只有了在嬉戏20世纪的最后。看来,我们将演示SIP的另一个通路使用si-ROMP方法形成嵌段共聚物的聚ethylene-oxide -poly (norbornene PEO-PNB)刷子的二氧化钛颗粒。粒子改性首次和执行对涂料研究,然后应用大,弯管来评估他们的能力表面改性。通过XPS分析,以确保每一步预期的元素出现了。确定实现普通嫁接PEO链密度从表面上看,哪个被发现2.7分子/纳米(2)。也可以确定聚合度(DP) polynorbornene链,这是12500. 产品,都使用颗粒膜的形成,之后,使用这些粒子的表面涂层覆盖更大的表面区域表面修改。决心是一个有趣的粒子候选人材料“种子”层,它可以用于较大的表面改性。

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