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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Electrostatic interactions between diffuse soft multi-layered (bio)particles: beyond Debye-Hilckel approximation and Deryagin formulation
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Electrostatic interactions between diffuse soft multi-layered (bio)particles: beyond Debye-Hilckel approximation and Deryagin formulation

机译:多层软多层(生物)粒子之间的静电相互作用:超越德拜-希尔克尔近似法和德里亚金公式

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摘要

We report a steady-state theory for the evaluation of electrostatic interactions between identical or dissimilar spherical soft multi-layered (bio)particles, e.g. microgels or microorganisms. These generally consist of a rigid core surrounded by concentric ion-permeable layers that may differ in thickness, soft material density, chemical composition and degree of dissociation for the ionogenic groups. The formahsm allows the account of diffuse interphases where distributions of ionogenic groups from one layer to the other are position-dependent. The model is vahd for any number of ion-permeable layers around the core of the interacting soft particles and covers all limiting situations in terms of nature of interacting particles, i.e. homo- and hetero-interactions between hard, soft or entirely porous colloids. The theory is based on a rigorous numerical solution of the non-linearized Poisson-Boltzmann equation including radial and angular distortions of the electric field distribution within and outside the interacting soft particles in approach. The Gibbs energy of electrostatic interaction is obtained from a general expression derived following the method by Verwey and Overbeek based on appropriate electric double layer charging mechanisms. Original analytical solutions are provided here for cases where interaction takes place between soft multi-layered particles whose size and charge density are in line with Deryagin treatment and Debye-Hiickel approximation. These situations include interactions between hard and soft particles, hard plate and soft particle or soft plate and soft particle. The flexibility of the formahsm is highlighted by the discussion of few situations which clearly illustrate that electrostatic interaction between multi-layered particles may be partly or predominantly governed by potential distribution within the most internal layers. A major consequence is that both amplitude and sign of Gibbs electrostatic interaction energy may dramatically change depending on the interplay between characteristic Debye length, thickness of ion-permeable layers and their respective protolytic features (e.g. location, magnitude and sign of charge density). This formalism extends a recent model by Ohshima which is strictly limited to interaction between soft mono-shell particles within Deryagin and Debye-Huckel approximations under conditions where ionizable sites are completely dissociated.
机译:我们报告了一种稳态理论,用于评估相同或不同的球形软多层(生物)颗粒之间的静电相互作用,例如微凝胶或微生物。这些通常由被同心的离子可渗透层包围的刚性芯组成,这些离子可渗透层的厚度,软材料密度,化学组成和离子化基团的解离度可能不同。 Formahsm允许考虑弥散相间的关系,其中离子源基团从一层到另一层的分布与位置有关。该模型适用于相互作用软颗粒核心周围的任意数量的离子渗透层,并涵盖了相互作用颗粒的性质(即硬,软或完全多孔胶体之间的均相和异相相互作用)的所有局限性情况。该理论基于非线性Poisson-Boltzmann方程的严格数值解,包括接近的相互作用软粒子内部和外部电场分布的径向和角度畸变。静电相互作用的吉布斯能量是由根据Verwey和Overbeek的方法基于适当的双电荷层充电机制推导的一般表达式获得的。此处提供原始解析解决方案,用于在大小和电荷密度与Deryagin处理和Debye-Hiickel近似一致的软多层颗粒之间发生相互作用的情况。这些情况包括硬和软颗粒,硬板和软颗粒或软板和软颗粒之间的相互作用。通过对几种情况的讨论突出了形式的灵活性,这些情况清楚地表明,多层颗粒之间的静电相互作用可能部分或主要由最内层内部的电势分布控制。一个主要的结果是,吉布斯静电相互作用能的幅度和符号都可能急剧变化,这取决于特征德拜长度,离子渗透层的厚度及其各自的质子化特征(例如位置,大小和电荷密度的符号)之间的相互作用。这种形式主义扩展了Ohshima的最新模型,该模型严格限于在可电离部位完全解离的条件下,Deryagin中的软单壳颗粒与Debye-Huckel近似之间的相互作用。

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