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首页> 外文期刊>The Journal of Chemical Physics >Critical behavior on approaching a special critical point in a complex fluid
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Critical behavior on approaching a special critical point in a complex fluid

机译:在复杂流体中接近特殊临界点的临界行为

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The critical behavior of osmotic susceptibility is investigated in the re-entrant complex mixture 1-propanol (P)+water (W)+potassium chloride (KCl) through light-scattering measurements. The measurements are performed on approaching a special critical point [i.e., the double critical point (DCP)] in this mixture, along the line of upper critical solution temperatures (T-U's), by varying t from the high temperature one-phase region. The light-scattering data analysis emphasizes the need for corrections to the asymptotic Ising behavior and yields very large magnitudes for the correction-to-scaling amplitudes A(1) and A(2), with the first-correction amplitude A(1) being negative, signifying a nonmonotonic crossover behavior of the susceptibility exponent in this mixture. For the T-U closest to the DCP, the effective susceptibility exponent gamma(eff) displays a nonmonotonic crossover from its nearly doubled three dimensional (3D)-Ising value toward its nearly double mean-field value with an increase in t. While for that far away from the DCP, it displays a nonmonotonic crossover from its single-limit Ising value toward a value slightly lower than its mean-field value of 1 with an increase in t. This feature of the effective susceptibility exponent is interpreted in terms of the possibility of a nonmonotonic crossover to the mean-field value from lower values in the nonasymptotic high t region. The renormalized Ising regime extends over a larger t range for the sample (or T-U) closest to the DCP when compared to that far away from it. The in-between T-U's display a trend toward shrinkage in the renormalized Ising regime as T-U shifts away from the DCP. Nevertheless, the crossover to the mean-field behavior is completed only beyond t>10(-2) for the T-U's studied. The observed crossover behavior is attributed to the presence of strong ion-induced clustering in this mixture, as revealed by various structure probing techniques, while the observed unique trend in the crossover behavior is discussed in terms of the varying influence of the DCP on the critical behavior along the T-U line. The crossover behavior for the T-U's is pronounced and more sharp compared to the T-L's (lower critical solution temperatures) [U. K. Pradeep, J. Chem. Phys. 129, 134506 (2008)] in this mixture, although there exists no difference in the growth of the mesoscale clusters in the lower and upper one-phase regions in this mixture. Our observations suggest the need to look at the crossover behavior probably from two perspectives, namely, the dielectric effect and the clustering effect. The effective susceptibility exponent as a function of the field variable t(UL), instead of the conventional variable t, displays a sharp nonmonotonic crossover from its asymptotic 3D-Ising value (similar to 1.24) toward a value slightly lower than its nonasymptotic mean-field value of 1, as that observed in the t analysis for the T-U far away from the influence of the DCP.
机译:通过光散射测量研究了折返复杂混合物1-丙醇(P)+水(W)+氯化钾(KCl)中渗透敏感性的临界行为。通过从高温单相区域改变t,沿着混合物的上临界溶液温度(T-U's)线,在接近此混合物中的特殊临界点[即双临界点(DCP)]时进行测量。光散射数据分析强调了对渐近Ising行为进行校正的必要性,并针对按比例缩放的幅度A(1)和A(2)产生了非常大的幅度,其中第一校正幅度A(1)为负,表示此混合物中磁化率指数的非单调交叉行为。对于最接近DCP的T-U,有效磁化率指数γ(eff)显示出从其几乎两倍的三维(3D)-Ising值到其几乎两倍的平均场值(随t增大)的非单调交叉。对于远离DCP的区域,随着t的增加,它会显示出从其单极限Ising值到略低于其平均场值1的值的非单调交叉。有效磁化率指数的这一特征是根据非渐近高t区域中从较低值到平均场值的非单调交叉的可能性来解释的。与远离DCP的样本相比,重新规范化的Ising机制在最接近DCP的样本(或T-U)的t范围更大。随着T-U远离DCP,T-U中间的部分在重新规范化的Ising状态下显示出收缩的趋势。尽管如此,对于T-U的研究,对平均场行为的交叉仅在t> 10(-2)以上才完成。正如各种结构探测技术所揭示的那样,观察到的交叉行为归因于这种混合物中存在强离子诱导的团簇,而观察到的交叉行为的独特趋势是根据DCP对临界温度的变化影响而讨论的。 TU线上的行为。与T-L(较低的临界溶液温度)相比,T-U的交叉行为更为明显和尖锐。 K.Pradeep,J.Chem。物理129,134506(2008)],尽管在该混合物的下部和上部一相区域中尺度集簇的生长没有差异。我们的观察结果表明,有必要从介电效应和聚类效应两个角度看待交叉行为。有效磁化率指数是场变量t(UL)的函数,而不是常规变量t,显示出从其渐近3D消散值(类似于1.24)到略低于其非渐进均值的值的尖锐的非单调交叉。在TU的t分析中观察到的场值1,远离DCP的影响。

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