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Reptation in Artificial Tubes and the Corset Effect of Confined Polymer Dynamics

机译:人工管中的重新研制和密闭型聚合物动力学的胸腺效应

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A spinodal demixing technique was employed for the preparation of linear poly(ethylene oxide) (PEO) confined to nanoscopic strands which in turn are embedded in a quasi-solid and impenetrable methacrylate matrix. Both the molecular weight of the PEO and the mean diameter of the strands are variable to a certain degree. Chain dynamics of the PEO in the molten state was examined with the aid of field-gradient NMR diffusometry (time scale: 10~(-2) s ... 10~0 s) and field-cycling NMR relaxometry (time scale: 10~(-9) s ... 10~(-4) s). The dominating mechanism for translational displacements probed in the nanoscopic strands by either technique is shown to be reptation. A corresponding evaluation formalism for NMR diffusometry is presented. It permits the estimation of the mean PEO strand diameter. Depending on the chemical composition of the matrix, the diameters range from 9 to 58 nm. The strands were visualized by electron microscopy. On the time scale of spin-lattice relaxation time measurements, the frequency dependence signature of reptation, that is T_1 ∝ v~(3/4), showed up in all samples. A "tube" diameter of only 0.6 nm was concluded to be effective on this time scale even when the strand diameter was larger than the radius of gyration of the PEO random coils. This "corset effect" is traced back to the lack of the local fluctuation capacity of the free volume in nanoscopic confinements. The confinement dimension is estimated at which the cross-over from "confined" to "bulk" chain dynamics is expected.
机译:用于制备局限于纳米镜链的线性聚(环氧乙烷)(PEO)的纺丝膜分层技术,其又嵌入了准固体和普遍甲基丙烯酸酯基质中。 PEO的分子量和股线的平均直径均为一定程度的可变。借助抗场梯度NMR扩散管道检查熔融状态下PEO的链动力学(时间标尺:10〜(-2)S ... 10〜0 S)和现场循环NMR弛豫测量法(时间缩放:10 〜(-9)s ... 10〜(-4)s)。通过任一技术探测在纳米镜链中探测的转化位移的主导机制被显示为重新开始。提出了对NMR扩散测定法的相应评估形式主义。它允许估计平均peo链直径。取决于基质的化学成分,直径范围为9至58nm。通过电子显微镜可视化链。在旋转晶格弛豫时间测量的时间尺度上,Reptation的频率依赖性特征,即T_1αv〜(3/4),在所有样品中出现。即使当股线直径大于PEO随机线圈的环绕半径时,结束了仅在此时间尺度上有效的“管”直径。这种“紧身胸部效应”追溯到纳米镜围绕自由体积的局部波动容量缺失。预期估计限制尺寸是预期从“限制”到“批量”链动态的交叉。

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