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Diffusion in binary liquid n-alkane and alkane-polyethylene blends

机译:在二元正构烷烃和烷烃-聚乙烯混合物中的扩散

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We have used the pulsed-gradient spin-echo proton nuclear magnetic resonance (NMR) method to measure two-component self-diffusion D in melts of two monodisperse polyethylenes, as well as in binary blends of n-dodecane and n-hexacontane, and of n-alkanes with the polyethylene (PE) specimens, over the full concentration range at various temperatures. In the n-alkane blends we observe ideal solution behavior at all concentrations, while in the alkane-PE blends the D ratio increases with rising PE concent and molecular weight. This behavior is reproduced by standard free-volume theory including chain-end effects and measured variation of density with molecular weight and temperature. In PE melts and blends the theory must include the gradual transition from Rouse to reptative motion above an entanglement molecular weight which depends on PE concentration. Constraint release effects are included, and dilute solution behavior is modeled near infinite PE dilution. All free-volume parameters are taken from our earlier study of n-alkane melts; the extensions of that theory introduce only one additional adjustable parameter.
机译:我们已经使用了脉冲梯度自旋回波质子核磁共振(NMR)方法来测量两种单分散聚乙烯的熔体以及正十二烷和正十六烷的二元共混物中两组分的自扩散D在各种温度下,在整个浓度范围内,正构烷烃与聚乙烯(PE)样品一起使用。在正构烷烃共混物中,我们观察到了所有浓度下的理想溶液行为,而在烷烃-PE共混物中,D比率随PE浓度和分子量的增加而增加。通过标准的自由体积理论(包括链端效应和密度随分子量和温度的变化测量得出)来重现此行为。在PE熔体和共混物中,理论必须包括在取决于PE浓度的纠缠分子量之上从Rouse到代表运动的逐渐过渡。包括约束释放作用,并且在接近无限PE稀释时对稀溶液行为进行建模。所有自由体积参数均取自我们对正构烷烃熔体的较早研究。该理论的扩展只引入了一个附加的可调参数。

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