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Mechanical Hole Burning Spectroscopy in Polymeric Systems - A Novel Technique to Characterize Dynamic Heterogeneity

机译:聚合物系统中的机械孔燃烧光谱法-表征动态异质性的新技术

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Mechanical Spectral Hole Burning (MSHB) is a novel rheological technique to probe dynamic heterogeneity for polymeric materials, which exhibit relatively weak dielectric responses. In the present work, mechanical spectral hole burning (MSHB) was applied to a block copolymer and a series of polystyrene solutions in order to investigate its capability of detecting the heterogeneity and the possible relationship between the length scale of heterogeneity and hole properties. The results illustrate the power of MSHB to probe the dynamic heterogeneity of polymeric systems as evidenced by the presence or absence of mechanical holes in the vicinity of the order-disorder transition of a block copolymer. The results also suggest the hole properties are not governed by the length scale of the heterogeneity, rather they are dominated by the dynamics, i.e., whether the MSHB is performed in close to Rouse regime, rubbery plateau regime, transition regime from plateau to terminal region or the terminal flow regime.
机译:机械光谱孔燃烧(MSHB)是一种新颖的流变技术,用于探测聚合物材料的动态异质性,该材料表现出相对较弱的介电响应。在目前的工作中,将机械光谱孔燃烧(MSHB)应用于嵌段共聚物和一系列聚苯乙烯溶液,以研究其检测异质性的能力以及异质性长度尺度与孔性质之间的可能关系。结果表明,MSHB能够探测聚合物体系的动态异质性,这一点可以通过在嵌段共聚物的有序无序过渡附近存在或不存在机械孔来证明。结果还表明,孔的性质不受异质性长度尺度的支配,而是由动力学决定,即MSHB是否在接近Rouse态,橡胶状高原态,从高原到末端区域的过渡态下进行或终端流动状态。

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