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Effects of ozone in surface modification and thermal stability of SEBS block copolymers

机译:臭氧对SEBS嵌段共聚物表面改性和热稳定性的影响

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摘要

SEBS block copolymers were treated under mild conditions in an ozone atmosphere, producing very slightly chemically-modified surfaces. The thermal stability was analysed by chemiluminescence and related to morphological changes observed by AFM. The intrinsic thermal stability was diminished by ozone exposure, but the oxidation induction times were delayed which indicates an enhancement of thermal stability under oxidative conditions. Also, chemiluminescence analysis showed the presence of a typical order-disorder transition at temperatures around 120 ℃. Two different sets of samples which showed different morphological patterns were imaged by AFM. The effects of micro-domain separation and inter-domain structure on thermal properties are discussed and explained by a coarsening of the internal interface induced by ozone. A detailed 2D Fourier transformed analysis of AFM images allowed us to identify a regular wrinkled nano-pattern induced by uniaxial strain combined with ozone treatment, offering new opportunities in applications ranging from organic electronics to bio-patterning.
机译:SEBS嵌段共聚物在温和的条件下于臭氧气氛中处理,产生了非常轻微的化学改性表面。通过化学发光分析热稳定性,并与AFM观察到的形态变化相关。暴露在臭氧中会降低固有的热稳定性,但氧化诱导时间会延迟,这表明在氧化条件下的热稳定性增强。另外,化学发光分析表明在120℃左右存在典型的有序-无序转变。通过AFM对显示不同形态模式的两组不同样品进行成像。通过臭氧引起的内部界面的粗化,讨论和解释了微区分离和畴间结构对热性能的影响。对AFM图像进行的详细2D傅里叶变换分析使我们能够识别出由单轴应变与臭氧处理相结合而引起的规则皱纹纳米图案,从而为从有机电子到生物图案的应用提供了新的机会。

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