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Diffusion Spectrum of Polymer Melt Measured by Varying Magnetic Field Gradient Pulse Width in PGSE NMR

机译:聚合物熔体的扩散光谱通过改变PGSE NMR中的磁场梯度脉冲宽度测量

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摘要

The translational motion of polymers is a complex process and has a big impact on polymer structure and chemical reactivity. The process can be described by the segment velocity autocorrelation function or its diffusion spectrum, which exhibit several characteristic features depending on the observational time scale—from the Brownian delta function on a large time scale, to complex details in a very short range. Several stepwise, more-complex models of translational dynamics thus exist—from the Rouse regime over reptation motion to a combination of reptation and tube-Rouse motion. Accordingly, different methods of measurement are applicable, from neutron scattering for very short times to optical methods for very long times. In the intermediate regime, nuclear magnetic resonance (NMR) is applicable—for microseconds, relaxometry, and for milliseconds, diffusometry. We used a variation of the established diffusometric method of pulsed gradient spin-echo NMR to measure the diffusion spectrum of a linear polyethylene melt by varying the gradient pulse width. We were able to determine the characteristic relaxation time of the first mode of the tube-Rouse motion. This result is a deviation from a Rouse model of polymer chain displacement at the crossover from a square-root to linear time dependence, indicating a new long-term diffusion regime in which the dynamics of the tube are also described by the Rouse model.
机译:聚合物的平移运动是复杂的方法,对聚合物结构和化学反应性具有很大的影响。该过程可以通过段速度自相关函数或其扩散谱来描述,这呈现了几个特征特征,这取决于观察时间尺度 - 从棕色Δ函数大规模尺度,在很短的范围内复杂的细节。因此,几个逐步,更复杂的翻译动态模型存在 - 从rouse制度通过Reptation Motion来组合恢复和管罗马运动。因此,从中子散射非常短的中子散射非常短的测量方法很短。在中间方案中,核磁共振(NMR)适用于微秒,弛豫和毫秒,扩散管道。我们使用了脉冲梯度旋转回波NMR的已建立的扩散方法的变化,以通过改变梯度脉冲宽度来测量线性聚乙烯熔体的扩散谱。我们能够确定管罗马运动的第一模式的特征松弛时间。该结果是从方根到线性时间依赖于线性时间依赖性的聚合物链位移的升级模型,这表明了一种新的长期扩散制度,其中rouse模型也描述了管的动态。

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