电解
沉积(地质)
粒子(生态学)
铜
颗粒沉积
布朗运动
旋转圆盘电极
化学
航程(航空)
机械
电解质
电极
化学物理
材料科学
冶金
电化学
复合材料
物理
物理化学
量子力学
地质学
海洋学
循环伏安法
沉积物
生物
古生物学
作者
Jan Fransaer,Jean‐Pierre Célis,Jef R. Roos
摘要
A model for the electrolytic codeposition of spherical particles with metals on a rotating disk electrode is presented, based on a trajectory analysis of the particle deposition, including convective mass transport, geometrical interception, and migration under specific forces, coupled to a surface immobilization reaction. A number of relevant forces were included and their effects determined. Theoretical predictions of this model are compared with experimental results for the codeposition of spherical polystyrene particles with copper during electrolysis from an acid copper sulfate solution. The influence of fluid flow velocities, particle concentration, and current density on the rate of particle deposition is illustrated. Experiments done on a rotating disk electrode allow the adhesion forces to be determined from the distribution of particles on the surface. It is shown that codeposition is governed by colloidal interactions that can, in first order, be approximated by the Derjaguin‐Landau‐Verwey‐Overbeek interactions plus an additional short range repulsion that was associated with the hydration force.
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