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Determination of critical length scales and the limit of metastability in phase separating polymer blends

机译:确定相分离聚合物共混物的临界长度尺度和亚稳定性极限

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Liquid-liquid phase separation in polymethylbutylene/polyethylbutylene blends near the metastability limit was studied using small angle neutron scattering (SANS). Our objective was to study the relationship between quench depth and R_c, the lower limit for the length scale of the structures formed during the early stages of the phase transition (nuclei). During the early stage of phase separation, the SANS profiles merged at a time-independent critical scattering vector, q_c. We discuss different methods for estimating q_c, and present arguments for the scaling relationship, R_c approx 1/q_c. The theory of Cahn and Hilliard predicts that i metastable blends R_c increases with increasing quench depth, and diverges at the spinodal. In contrast, our experimental measurements showed R_c increases with decreasing quench depth, and the location of the point where R_c diverges lies between the binodal and the spinodal. Some aspects of our results are addressed in recent theoretical work of Wang and Wood [J. Chem. Phys. 117, 481 (2002)], wherein the effects of fluctuations on the binodal and spinodal curves in polymer blends are incorporated.
机译:使用小角度中子散射(SANS)研究了亚稳极限附近的聚甲基丁烯/聚乙基丁烯混合物中的液-液相分离。我们的目的是研究淬火深度与R_c(相变早期(原子核)早期形成的结构的长度尺度的下限)之间的关系。在相分离的早期阶段,SANS配置文件在与时间无关的临界散射矢量q_c处合并。我们讨论了估计q_c的不同方法,并给出了比例关系R_c大约1 / q_c的参数。卡恩(Cahn)和希利亚德(Hilliard)的理论预测,亚稳态共混物R_c随淬灭深度的增加而增加,并在旋节线上发散。相比之下,我们的实验测量结果表明R_c随着淬火深度的减小而增加,并且R_c发散点的位置位于双节线和旋节线之间。 Wang和Wood的最新理论工作探讨了我们研究结果的某些方面[J.化学物理117,481(2002)],其中引入了波动对聚合物共混物的双曲线和旋节曲线的影响。

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