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首页> 外文期刊>The Journal of Chemical Physics >Polymer chain dynamics in dilute solution under Couette flow: Behavior of poly(#alpha#-methylstyrene) in good solvent
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Polymer chain dynamics in dilute solution under Couette flow: Behavior of poly(#alpha#-methylstyrene) in good solvent

机译:Couette流动下稀溶液中的聚合物链动力学:聚(#alpha#-甲基苯乙烯)在良好溶剂中的行为

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摘要

Chain dynamics of poly(#alpha#-methylstyrene) of high molecular weight in benzene, a good solvent, in dilute solution was investigated by dynamic light scattering under Couette flow, or the one-dimensional simple shear flow. At the velocity gradient #gamma# = 0.34 - 5.2 s~(-1) measured, two modes of the translational diffusion and the intramolecular motions were detected. However, the latter was suppressed with the increase of #gamma#. The suppression occurred only in the amplitude without any change in the inherent internal-mode frequencies. The universal ratio #OMEGA#/D_(0q~2), estimated as a #gamma#-independent characteristic value in good solvents, agreed well with the theoretical curve predicted for the nondraining Gaussian chain with the microscopic description of chain dynamics, and differed from the macroscopic one with the preaveraged Oseen hydrodynamics. This quantitative agreement suggests that (1) the coupled kinetic equations for chains segments and solvent in the same dynamic level are indispensable for describing rigorous chain dynamic in dilute solution, and (2) the internal motions in the shear field suffer the hydrodynamic interaction strongly (to the level of the Zimm limit), the interaction being compensated for the intramolecular excluded volume effect and making the chain quasi-ideal even in good solvents.
机译:通过在库埃特流或一维简单剪切流下的动态光散射,研究了稀溶液中苯(一种良溶剂)中高分子量聚(#α#-甲基苯乙烯)的链动力学。在测得的速度梯度#gamma#= 0.34-5.2 s〜(-1)处,检测到平移扩散和分子内运动的两种模式。但是,后者随着#gamma#的增加而受到抑制。抑制仅发生在幅度上,而固有内部模式频率没有任何变化。通用比#OMEGA#/ D_(0q〜2)在良好溶剂中估计为与#gamma#无关的特征值,与链动力学的微观描述所预测的不排水高斯链的理论曲线非常吻合,并且有所不同从宏观角度看,具有预平均的Oseen流体力学。该定量结果表明(1)在相同的动态水平下链段和溶剂的耦合动力学方程对于描述稀溶液中严格的链动力学是必不可少的,(2)剪切场中的内部运动强烈地受到水动力相互作用( (达到Zimm极限的水平),这种相互作用可以补偿分子内排除的体积效应,即使在良好的溶剂中也使链成为准理想的。

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