首页> 外文会议>NATO Advanced Research Workshop on Role of Interfaces in Environmental Protection >A SIMPLE INTERACTION MODEL OF PARTICLES COVERED WITH POLYELECTROLYTE BRUSH LAYERS IN THE STRONG CHARGING AND STRONG SCREENING REGIME WITH IMPLICATIONS TO MICROBIAL AGGREGATION AND ADHESION
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A SIMPLE INTERACTION MODEL OF PARTICLES COVERED WITH POLYELECTROLYTE BRUSH LAYERS IN THE STRONG CHARGING AND STRONG SCREENING REGIME WITH IMPLICATIONS TO MICROBIAL AGGREGATION AND ADHESION

机译:用电磁刷层覆盖的粒子简单的相互作用模型,在强大的充电和强大的筛选方案中对微生物聚集和粘附的影响

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In order to better understand and predict the influence of main solution parameters (pH and ionic strength) on aggregation/adhesion of "hairy" colloids mimicking bacteria, a simple interaction model is proposed. In this model, the van der Waals interaction energy between two spheres is combined with the electrosteric interaction energy between brush layers of flexible polyelectrolyte chains end-grafted on the spheres. The latter interaction energy component is expressed using simple asymptotic scaling approximations (omitting their numerical prefactors) derived earlier (Pincus, P.: Colloid stabilization with grafted polyelectrolytes, Macromolecules, 1991, 24, 2912-2919) for the mean thickness L and interaction force P of planar polyelectrolyte brushes in the so-called strong charging limit (SCL) and the strong screening limit (SSL) on the assumption that the distribution of monomers throughout the brushes is uniform. Any other interaction components (double-layer, structural or acid-base, hydrophobic, bridging, etc.) are neglected. The nonelectrostatic (excluded volume) interactions are also omitted. Both quenched and annealed polyelectrolyte types (with the constant and pH-dependent charge, respectively) of brushes are considered. The number of monomers per chain N, grafting density σ, and the monomer size a* are proposed as brush parameters. The fraction of elementary charged monomers f is the next parameter which however may depend on the solution conditions for annealed brushes. The above parameters can be estimated by identifying them with the known molecular parameters and/or from the fixed charge density (fc_p = fσN/L) - a parameter obtainable from the soft particle electrophoretic analysis (Ohshima, H.: Electrophoretic mobility of soft particles, J. Colloid Interface Sci., 1994, 163, 474-483). Three sets of the brush parameters are used to model the effect of ionic strength and f on the interaction energy between Gram-negative bacteria in the SSL regime where the quenched and annealed polyelectrolyte brushes are expected to behave identically.Generally, a step-like interaction energy-vs-separation profile is obtained with a pseudo-secondary minimum (no maximum), being in line with the conception of secondary minimum aggregation and adhesion of bacteria. An opposite influence of increasing f and ionic strentgh on the pseudosecondary minimum depth (decrease and increase, respectively) is found which is expected but not predictable by the DLVO-based or steric interaction models. Dramatic changes in the position and depth of that minimum also indicate a necessity of proper evaluation of the brush parameters but, at the same time, reveal a possibility of accounting the wide variability in the bacterial cell wall structures (also inferred from the soft-particle electrophoretic analysis).
机译:为了更好地理解和预测主要溶液参数(pH和离子强度)对“毛茸茸”胶体模拟细菌的聚集/粘附的影响,提出了一种简单的相互作用模型。在该模型中,两个球体之间的范德瓦尔斯相互作用能量与柔性聚电解质链的刷层之间的柔性电极链之间的整体互动能量结合在球体上。后一种交互能量分量使用前面的简单渐近缩放近似(省略其数值Veactors)(Pincus,P.:胶体稳定,用接枝的聚电解质,Macromole,1991,24,2912-2912),用于平均厚度L和相互作用力平面聚电解质刷在所谓的强充电极限(SCL)和强烈的筛选极限(SSL)上,假设在整个刷子中的单体分布是均匀的。忽略了任何其他相互作用组分(双层,结构或酸碱,疏水性,桥接等)。也省略了非电诱导的(不包括的体积)相互作用。考虑淬火和退火的聚电解质类型(分别具有常数和pH依赖性电荷)。提出了每个链N,移植密度σ和单体尺寸A *的单体的数量作为刷参数。基本电荷单体F的级分是下一个参数,但是可以取决于退火刷的溶液条件。通过用已知的分子参数和/或来自固定电荷密度(FC_P =FΣN/ L)鉴定它们可以估计上述参数 - 从软颗粒电泳分析(Ohshima,H.:软颗粒的电泳迁移率可获得的参数,J.Crint接口SCI。,1994,163,474-483)。三组刷子参数用于模拟离子强度和F在SSL状态下革兰阴性细菌之间的相互作用能量的影响,其中预期淬火和退火的聚电解质刷的行为相同。生成的阶梯状相互作用通过伪二次最小(不最大)获得能量-VS-分离曲线,与二次最小聚集和细菌的粘附符合。增加F和离子大致对伪音质最小深度(分别降低和增加)的相反影响,这是预期的,但不可通过基于DLVO或空间相互作用模型预测。该最小值的位置和深度的剧烈变化还表明了刷子参数的适当评估的必要性,但同时揭示了对细菌细胞壁结构的宽变异性的可能性(也从软颗粒推断出来电泳分析)。

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