Papagiannopoulos A, Fernyhough C M, Waigh T A
Department of Physics and Astronomy, University of Leeds, Leeds LS2 9JT, United Kingdom.
J Chem Phys. 2005 Dec 1;123(21):214904. doi: 10.1063/1.2136888.
Video particle tracking (VPT) and diffusing wave spectroscopy were used to characterize the microrheology of polystyrene sulfonate combs in aqueous solutions. At low frequencies VPT demonstrated predominantly viscous behavior. The manner in which the viscosity scaled as a function of monomer concentration was a sensitive function of the comb architecture. Densely branched combs or combs with long side chains demonstrated entangled polyelectrolyte scaling above the overlap concentration, whereas sparsely branched combs had unentangled polyelectrolyte scaling. A dynamic scaling model was developed for the viscosity of unentangled semidilute solutions of comb polyelectrolytes. Diffusing wave spectroscopy demonstrated Rouse modes (G' approximately G" approximately omega12) for the high-frequency dynamics of the semidilute comb solutions. The form of the high-frequency viscoelasticity was independent of the chain architecture and the modulus scaled as expected for linear flexible polyelectrolytes.
采用视频粒子跟踪(VPT)和扩散波谱法对聚苯乙烯磺酸盐梳状聚合物在水溶液中的微观流变学进行了表征。在低频下,VPT主要表现出粘性行为。粘度随单体浓度变化的方式是梳状聚合物结构的敏感函数。高度支化的梳状聚合物或具有长侧链的梳状聚合物在重叠浓度以上表现出缠结的聚电解质标度,而稀疏支化的梳状聚合物则具有未缠结的聚电解质标度。针对梳状聚电解质未缠结的半稀溶液的粘度,建立了一个动态标度模型。扩散波谱法表明,半稀梳状聚合物溶液的高频动力学存在Rouse模式(G'约等于G''约等于ω1/2)。高频粘弹性的形式与链结构无关,模量按线性柔性聚电解质的预期标度变化。