Léonforte F, Welling U, Müller M
Institut für Theoretische Physik, Georg-August-Universität, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany.
J Chem Phys. 2016 Dec 14;145(22):224902. doi: 10.1063/1.4971212.
Structural properties of brushes which are composed of weak acidic and basic polyelectrolytes are studied in the framework of a particle-based approach that implicitly accounts for the solvent quality. Using a semi-grandcanonical partition function in the framework of the Single-Chain-in-Mean-Field (SCMF) algorithm, the weak polyelectrolyte is conceived as a supramolecular mixture of polymers in different dissociation states, which are explicitly treated in the partition function and sampled by the SCMF procedure. One obtains a local expression for the equilibrium acid-base reaction responsible for the regulation of the charged groups that is also incorporated to the SCMF sampling. Coupled to a simultaneous treatment of the electrostatics, the approach is shown to capture the main features of weak polyelectrolyte brushes as a function of the bulk pH in the solution, the salt concentration, and the grafting density. Results are compared to experimental and theoretical works from the literature using coarse-grained representations of poly(acrylic acid) (PAA) and poly(2-vinyl pyridine) (P2VP) polymer-based brushes. As the Born self-energy of ions can be straightforwardly included in the numerical approach, we also study its effect on the local charge regulation mechanism of the brush. We find that its effect becomes significant when the brush is dense and exposed to high salt concentrations. The numerical methodology is then applied (1) to the study of the kinetics of collapse/swelling of a P2VP brush and (2) to the ability of an applied voltage to induce collapse/swelling of a PAA brush in a pH range close to the pK value of the polymer.
在一种基于粒子的方法框架内研究了由弱酸性和碱性聚电解质组成的刷状结构的性质,该方法隐含地考虑了溶剂性质。在单链平均场(SCMF)算法框架内使用半巨正则配分函数,将弱聚电解质设想为处于不同解离状态的聚合物的超分子混合物,这些状态在配分函数中得到明确处理,并通过SCMF程序进行采样。得到了负责调节带电基团的平衡酸碱反应的局部表达式,该表达式也被纳入SCMF采样中。与静电学的同时处理相结合,该方法被证明能够捕捉弱聚电解质刷作为溶液中本体pH、盐浓度和接枝密度函数的主要特征。使用基于聚(丙烯酸)(PAA)和聚(2-乙烯基吡啶)(P2VP)聚合物的刷状结构的粗粒化表示,将结果与文献中的实验和理论工作进行了比较。由于离子的玻恩自能可以直接包含在数值方法中,我们还研究了其对刷状结构局部电荷调节机制的影响。我们发现,当刷状结构致密且暴露于高盐浓度时,其影响变得显著。然后将数值方法应用于(1)研究P2VP刷状结构的塌陷/溶胀动力学,以及(2)研究在接近聚合物pK值的pH范围内施加电压诱导PAA刷状结构塌陷/溶胀的能力。