Franco S, Buratti E, Ruzicka B, Nigro V, Zoratto N, Matricardi P, Zaccarelli E, Angelini R
Dipartimento di Scienze di Base e Applicate per l'Ingegneria (SBAI), Sapienza Università di Roma, 00185 Roma, Italy.
Instituto dei Sistemi Complessi del Consiglio Nazionale delle Ricerche (ISC-CNR), Sede Sapienza, 00185 Roma, Italy.
J Phys Condens Matter. 2021 Apr 21;33(17). doi: 10.1088/1361-648X/abe1ec.
Interpenetrated polymer network microgels, composed of crosslinked networks of poly(-isopropylacrylamide) and polyacrylic acid (PAAc), have been investigated through rheological measurements at four different amounts of PAAc. Both PAAc content and crosslinking degree modify particle dimensions, mass and softness, thereby strongly affecting the volume fraction and the system viscosity. Here the volume fraction is derived from the flow curves at low concentrations by fitting the zero-shear viscosity with the Einstein-Batchelor equation which provides a parameterto shift weight concentration to volume fraction. We find that particles with higher PAAc content and crosslinker are characterized by a greater value ofand therefore by larger volume fractions when compared to softer particles. The packing fractions obtained from rheological measurements are compared with those from static light scattering for two PAAc contents revealing a good agreement. Moreover, the behaviour of the viscosity as a function of packing fraction, at room temperature, has highlighted an Arrhenius dependence for microgels synthesized with low PAAc content and a Vogel-Fulcher-Tammann dependence for the highest investigated PAAc concentration. A comparison with the hard spheres behaviour indicates a steepest increase of the viscosity with decreasing particles softness. Finally, the volume fraction dependence of the viscosity at a fixed PAAc and at two different temperatures, below and above the volume phase transition, shows a quantitative agreement with the structural relaxation time measured through dynamic light scattering indicating that interpenetrated polymer network microgels softness can be tuned with PAAc and temperature and that, depending on particle softness, two different routes are followed.
由聚(N-异丙基丙烯酰胺)和聚丙烯酸(PAAc)的交联网络组成的互穿聚合物网络微凝胶,已通过对四种不同含量的PAAc进行流变学测量进行了研究。PAAc含量和交联度都会改变颗粒尺寸、质量和柔软度,从而强烈影响体积分数和体系粘度。此处体积分数是通过在低浓度下的流动曲线,利用爱因斯坦-巴彻勒方程拟合零剪切粘度得出的,该方程提供了一个将重量浓度转换为体积分数的参数。我们发现,与较软的颗粒相比,具有较高PAAc含量和交联剂的颗粒具有更大的[具体参数]值,因此具有更大的体积分数。对于两种PAAc含量,将流变学测量得到的填充分数与静态光散射得到的填充分数进行比较,结果显示吻合良好。此外,在室温下,粘度随填充分数的变化行为表明,对于低PAAc含量合成的微凝胶,粘度呈现阿累尼乌斯依赖性,而对于所研究的最高PAAc浓度,粘度呈现Vogel-Fulcher-Tammann依赖性。与硬球行为的比较表明,随着颗粒柔软度降低,粘度增加得更快。最后,在固定PAAc且在低于和高于体积相变的两个不同温度下,粘度对体积分数的依赖性与通过动态光散射测量的结构弛豫时间在定量上吻合,这表明互穿聚合物网络微凝胶的柔软度可以通过PAAc和温度进行调节,并且根据颗粒柔软度,遵循两种不同的途径。