...
首页> 外文期刊>The Journal of Chemical Physics >Born energy, acid-base equilibrium, structure and interactions of end-grafted weak polyelectrolyte layers
【24h】

Born energy, acid-base equilibrium, structure and interactions of end-grafted weak polyelectrolyte layers

机译:末端接枝的弱聚电解质层的生能,酸碱平衡,结构和相互作用

获取原文
获取原文并翻译 | 示例
           

摘要

This work addresses the effect of the Born self-energy contribution in the modeling of the structural and thermodynamical properties of weak polyelectrolytes confined to planar and curved surfaces. The theoretical framework is based on a theory that explicitly includes the conformations, size, shape, and charge distribution of all molecular species and considers the acid-base equilibrium of the weak polyelectrolyte. Namely, the degree of charge in the polymers is not imposed but it is a local varying property that results from the minimization of the total free energy. Inclusion of the dielectric properties of the polyelectrolyte is important as the environment of a polymer layer is very different from that in the adjacent aqueous solution. The main effect of the Born energy contribution on the molecular organization of an end-grafted weak polyacid layer is uncharging the weak acid (or basic) groups and consequently decreasing the concentration of mobile ions within the layer. The magnitude of the effect increases with polymer density and, in the case of the average degree of charge, it is qualitatively equivalent to a small shift in the equilibrium constant for the acid-base equilibrium of the weak polyelectrolyte monomers. The degree of charge is established by the competition between electrostatic interactions, the polymer conformational entropy, the excluded volume interactions, the translational entropy of the counterions and the acid-base chemical equilibrium. Consideration of the Born energy introduces an additional energetic penalty to the presence of charged groups in the polyelectrolyte layer, whose effect is mitigated by down-regulating the amount of charge, i.e., by shifting the local-acid base equilibrium towards its uncharged state. Shifting of the local acid-base equilibrium and its effect on the properties of the polyelectrolyte layer, without considering the Born energy, have been theoretically predicted previously. Account of the Born energy leads to systematic, but in general small, corrections to earlier theoretical predictions describing the behavior of weak polyelectrolyte layers. However, polyelectrolyte uncharging results in a decrease in the concentration of counterions and inclusion of the Born Energy can result in a substantial decrease of the counterion concentration. The effect of considering the Born energy contribution is explored for end-grafted weak polyelectrolyte layers by calculating experimental observables which are known to depend on the presence of charges within the polyelectrolyte layer: inclusion of the Born energy contribution leads to a decrease in the capacitance of polyelectrolyte-modified electrodes, a decrease of conductivity of polyelectrolyte-modified nanopores and an increase in the repulsion exerted by a planar polyelectrolyte layer confined by an opposing wall.
机译:这项工作解决了Born自能贡献对受限于平面和曲面的弱聚电解质的结构和热力学性质建模的影响。该理论框架基于一种理论,该理论明确包括所有分子种类的构象,大小,形状和电荷分布,并考虑了弱聚电解质的酸碱平衡。即,不强加聚合物中的电荷度,而是由于总自由能最小而引起的局部变化的性质。包含聚电解质的介电性质是重要的,因为聚合物层的环境与相邻水溶液中的环境非常不同。 Born能量贡献对末端接枝的弱多元酸层的分子组织的主要影响是使弱酸(或碱性)基团不带电荷,因此降低了层中活动离子的浓度。影响的程度随聚合物密度的增加而增加,在平均电荷度的情况下,其定性相当于弱聚电解质单体的酸碱平衡的平衡常数发生小的变化。电荷的程度取决于静电相互作用,聚合物构象熵,排除的体积相互作用,抗衡离子的平移熵和酸碱化学平衡之间的竞争。对Born能量的考虑会给聚电解质层中带电基团的存在带来额外的能量损失,通过下调电荷量,即通过将局部酸碱平衡移向其不带电状态,可以减轻其影响。先前已经在理论上预测了不考虑伯恩能的局部酸碱平衡的偏移及其对聚电解质层性能的影响。对Born能量的解释导致对较早的描述弱聚电解质层行为的理论预测进行了系统的但总体上较小的修正。但是,聚电解质的带电导致抗衡离子浓度的降低,并且包含Born Energy会导致抗衡离子浓度的大幅降低。通过计算实验观察值来探索末端接枝弱聚电解质层考虑Born能量贡献的效果,已知该实验可观察值取决于聚电解质层中电荷的存在:包含Born能量贡献会导致电容降低。聚电解质修饰的电极,聚电解质修饰的纳米孔的电导率降低以及由相对壁所限制的平面聚电解质层施加的排斥力增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号