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二元液体混合物旋节线分解后期实验测定的生长指数。

Experimentally determined growth exponents during the late stage of spinodal demixing in binary liquid mixtures.

作者信息

Hobley Jonathan, Kajimoto Shinji, Takamizawa Atsushi, Fukumura Hiroshi

机构信息

Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2006 Jan;73(1 Pt 1):011502. doi: 10.1103/PhysRevE.73.011502. Epub 2006 Jan 5.

Abstract

Spinodal demixing was initiated in two systems, with critical and off-critical compositions, using nanosecond pulsed laser-induced temperature jumps (T-jumps) of various magnitude. In this way, deep quenches could be imposed on the systems. One system was the simple triethylamine (TEA)/water mixture and the other was the ionic mixture of 2-butoxyethanol (2BE)/water/KCl. The demixing process was followed using the technique of nanosecond time-resolved microscopic shadowgraphy. The growth of the evolving phase-separated domains followed a simple power law with respect to time in every case. For a given composition, the magnitude of the T-jump had little effect on the growth exponent, however the composition was found to influence the rate of domain growth. At off-critical mole fractions of 0.2 with respect to TEA, the domains grew according to the following expression: L(t)=t(0.70) (where L(t)= the domain size) whereas at the critical TEA mole fraction of 0.08 the domains grew as L(t)=t(0.52). 2BE/water/KCl mixtures quenched at the just off-critical composition of fraction with respect to 2BE evolved as L(t)=t(0.63). These results will be compared to theoretical models and simulations and discussed in terms of estimated Reynolds numbers as well as the consumption and conversion of the available surface energy that fuels the demixing process.

摘要

在两个具有临界和非临界组成的体系中,利用不同幅度的纳秒脉冲激光诱导温度跃变(T 跃变)引发旋节线分解。通过这种方式,可以对体系进行深度淬火。一个体系是简单的三乙胺(TEA)/水混合物,另一个是 2-丁氧基乙醇(2BE)/水/KCl 的离子混合物。使用纳秒时间分辨显微镜阴影成像技术跟踪相分离过程。在每种情况下,演化的相分离域的生长都遵循关于时间的简单幂律。对于给定的组成,T 跃变的幅度对生长指数影响不大,然而发现组成会影响域生长速率。在相对于 TEA 的非临界摩尔分数为 0.2 时,域的生长符合以下表达式:L(t)=t(0.70)(其中 L(t)为域尺寸),而在 TEA 的临界摩尔分数为 0.08 时,域的生长为 L(t)=t(0.52)。在相对于 2BE 的刚好非临界组成分数下淬火的 2BE/水/KCl 混合物,其生长为 L(t)=t(0.63)。这些结果将与理论模型和模拟进行比较,并根据估计的雷诺数以及驱动相分离过程的可用表面能的消耗和转化进行讨论。

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