胶体化学(第13章)课件.ppt
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1、Chapter 13. Electrostatic and polymer-induced colloid stability13.1 Introduction1. Colloid stability Colloid stability(胶体的稳定性胶体的稳定性):The stability of a dispersion to resist coagulation.Kinetic stability(动力稳定性动力稳定性): Evaluated(评价)(评价) by kinetics.Thermodynamic stability(热力学稳定性热力学稳定性):Evaluated by the
2、rmodynamics.Van der Waals force: attractive and is strong at short interparticle separation.There are two forces to against van der Waals force to protect colloid stability: Electrostatic forceelectrical double layer. electrostatic stability(电稳定作用电稳定作用)。 Polymer repulsive force:The adsorbed polymer
3、layer on dispersed particles masks(屏蔽、对抗屏蔽、对抗) the attraction force of van der Waals force.Polymer-induced stability(聚合物稳定作用聚合物稳定作用) or steric stability(空间稳定作用空间稳定作用).2. Focus of this chapter The stability and the structure of dispersions; Structure: spatial(空间的空间的) organization(构造、(构造、架构)架构) of the
4、 colloidal particles. How interparticle forces influence the structure of a dispersion; How the influence of interparticle interaction energies on dispersion stability; How polymer influence the stability of dispersions.13.2 Interparticle forces, structure and stability of dispersionsTo know the rel
5、ation between interparticle forces, the microstructure of dispersions and the factors that determine such a relation.Interpaly between interpartcle forces and structureDominated by strong repulsion;Dominated by strong attraction;1. Intermediate situations.Interparticle forces and the corresponding m
6、icrostructure of monodisperse colloidsHow interparticle forces and the concentration of the particles to determine the structure of dispersions.13.3 Interaction energy curves and their dependence on the properties of the dispersionThe Interaction energy curves are useful for developing quantitative
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