Ahualli Silvia, Bermúdez Sara, Carrique Félix, Jiménez María L, Delgado Ángel V
Department of Applied Physics, School of Sciences, University of Granada, 18071 Granada, Spain.
Department of Applied Physics I, School of Sciences, University of Málaga, 23071 Málaga, Spain.
Polymers (Basel). 2020 Sep 15;12(9):2097. doi: 10.3390/polym12092097.
Interest in the electrical properties of the interface between soft (or polymer-grafted) nanoparticles and solutions is considerable. Of particular significance is the case of polyelectrolyte-coated particles, mainly taking into account that the layer-by-layer procedure allows the control of the thickness and permeability of the layer, and the overall charge of the coated particle. Like in simpler systems, electrokinetic determinations in AC fields (including dielectric dispersion in the 1 kHz-1 MHz frequency range and dynamic electrophoresis by electroacoustic methods in the 1-18 MHz range) provide a large amount of information about the physics of the interface. Different models have dealt with the electrokinetics of particles coated by a single polymer layer, but studies regarding multi-layered particles are far scarcer. This is even more significant in the case of so-called salt-free systems; ideally, the only charges existing in this case consist of the charge in the layer(s) and the core particle itself, and their corresponding countercharges, with no other ions added. The aims of this paper are as follows: (i) the elaboration of a model for the evaluation of the electrokinetics of multi-grafted polymer particles in the presence of alternating electric fields, in dispersion media where no salts are added; (ii) to carry out an experimental evaluation of the frequency dependence of the dynamic (or AC) electrophoretic mobility and the dielectric permittivity of suspensions of polystyrene latex spherical particles coated with successive layers of cationic, anionic, and neutral polymers; and (iii) finally, to perform a comparison between predictions and experimental results, so that it can be demonstrated that the electrokinetic analysis is a useful tool for the in situ characterization of multilayered particles.
人们对软质(或聚合物接枝)纳米颗粒与溶液之间界面的电学性质兴趣浓厚。特别重要的是聚电解质包覆颗粒的情况,主要考虑到层层组装法能够控制包覆层的厚度、渗透率以及包覆颗粒的总电荷。与更简单的体系一样,在交流电场中进行的电动测定(包括1kHz - 1MHz频率范围内的介电色散以及1 - 18MHz范围内通过电声方法进行的动态电泳)能提供大量有关界面物理性质的信息。不同模型已处理过由单一聚合物层包覆的颗粒的电动现象,但关于多层颗粒的研究则少得多。在所谓的无盐体系中,这种情况更为显著;理想情况下,在此情形中存在的唯一电荷由包覆层和核心颗粒本身的电荷及其相应的反电荷组成,不添加其他离子。本文的目的如下:(i)构建一个模型,用于评估在无盐分散介质中,交变电场作用下多接枝聚合物颗粒的电动现象;(ii)对包覆有阳离子、阴离子和中性聚合物连续层的聚苯乙烯胶乳球形颗粒悬浮液的动态(或交流)电泳迁移率和介电常数的频率依赖性进行实验评估;(iii)最后,对预测结果与实验结果进行比较,从而证明电动分析是用于原位表征多层颗粒的有用工具。