Del Monte Giovanni, Camerin Fabrizio, Ninarello Andrea, Gnan Nicoletta, Rovigatti Lorenzo, Zaccarelli Emanuela
CNR Institute of Complex Systems, Uos Sapienza, Piazzale Aldo Moro 2, 00185, Roma, Italy.
Department of Physics, Sapienza University of Rome, Piazzale Aldo Moro 2, 00185 Roma, Italy.
J Phys Condens Matter. 2021 Feb 24;33(8):084001. doi: 10.1088/1361-648X/abc4cb.
Ionic microgel particles are intriguing systems in which the properties of thermo-responsive polymeric colloids are enriched by the presence of charged groups. In order to rationalize their properties and predict the behaviour of microgel suspensions, it is necessary to develop a coarse-graining strategy that starts from the accurate modelling of single particles. Here, we provide a numerical advancement of a recently-introduced model for charged co-polymerized microgels by improving the treatment of ionic groups in the polymer network. We investigate the thermoresponsive properties of the particles, in particular their swelling behaviour and structure, finding that, when charged groups are considered to be hydrophilic at all temperatures, highly charged microgels do not achieve a fully collapsed state, in favorable comparison to experiments. In addition, we explicitly include the solvent in the description and put forward a mapping between the solvophobic potential in the absence of the solvent and the monomer-solvent interactions in its presence, which is found to work very accurately for any charge fraction of the microgel. Our work paves the way for comparing single-particle properties and swelling behaviour of ionic microgels to experiments and to tackle the study of these charged soft particles at a liquid-liquid interface.
离子微凝胶颗粒是一种有趣的体系,其中热响应性聚合物胶体的性质因带电基团的存在而得到丰富。为了合理地解释它们的性质并预测微凝胶悬浮液的行为,有必要开发一种从单个颗粒的精确建模开始的粗粒化策略。在这里,我们通过改进聚合物网络中离子基团的处理方法,对最近引入的带电共聚微凝胶模型进行了数值改进。我们研究了颗粒的热响应性质,特别是它们的溶胀行为和结构,发现当带电基团在所有温度下都被认为是亲水性时,与实验结果相比,高电荷微凝胶不会达到完全塌陷状态。此外,我们在描述中明确纳入了溶剂,并提出了在没有溶剂时的疏溶剂势与存在溶剂时的单体 - 溶剂相互作用之间的映射关系,发现这种映射关系对于微凝胶的任何电荷分数都非常准确地起作用。我们的工作为将离子微凝胶的单颗粒性质和溶胀行为与实验进行比较以及解决这些带电软颗粒在液 - 液界面的研究铺平了道路。