首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Adhesion of hard spheres under the influence of double-layer van der Waals and gravitational potentials at a solid/liquid interface.
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Adhesion of hard spheres under the influence of double-layer van der Waals and gravitational potentials at a solid/liquid interface.

机译:在固体/液体界面的双层范德华力和重力的影响下硬球体的附着力。

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摘要

The deposition process of colloidal particles or microorganisms on flat surfaces is analyzed by means of computer simulations. Interparticle interactions (double layer and van der Waals) and weak gravitational forces are taken into account; hydrodynamic interactions, on the other hand, are neglected. In particular, the deposition probability as a function of the deposition location of a particle in the presence of one or two identical fixed particles is discussed. It is shown, in particular, that the ratio of the adhesion probabilities at a given location r, for particles subject to weak gravitation, in the presence and in the absence of the interparticle interaction U(r) follows approximately a Boltzmann law exp[-U(r)/kT], even though the adsorption process is fully irreversible. This result validates, as far as the distribution function of particles on a surface is concerned, Adamczyk's assumption [Adamczyk, Z., Zembala, M., Siwek, B. & Warszynski, P. (1990) J. Colloid Interface Sci. 140, 123-137] that the adhesion process of Brownian particles can be modeled by a random sequential adsorption model with an adsorption probability equal to exp[-U(r)/kT].
机译:通过计算机模拟分析胶体颗粒或微生物在平坦表面上的沉积过程。考虑了粒子间的相互作用(双层和范德华力)以及弱重力。另一方面,流体动力相互作用被忽略了。特别地,讨论了在一个或两个相同的固定颗粒的存在下作为颗粒的沉积位置的函数的沉积概率。特别地,对于在存在和不存在粒子间相互作用的情况下,在弱重力作用下的粒子,给定位置r的附着概率之比U(r)近似遵循玻尔兹曼定律exp [- U(r)/ kT],即使吸附过程是完全不可逆的。就颗粒在表面上的分布功能而言,该结果证实了Adamczyk的假设[Adamczyk,Z.,Zembala,M.,Siwek,B.&Warszynski,P.(1990)J. Colloid Interface Sci。 140,123-137]可以通过随机顺序吸附模型对布朗粒子的粘附过程进行建模,其吸附概率等于exp [-U(r)/ kT]。

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