In the electrochemical deposition of thin films, the measurement of the current-time curve does not allow for a direct determination of the nucleus growth law, electrode surface coverage, and mean film thickness. In this work, we present a theoretical approach suitable to gain insight into these quantities from the knowledge of nucleation density, solution parameters, and currenttime behavior. The model applies to both isotropic and anisotropic growth rates of nuclei and a study on the effect of nucleus shape and aspect ratio on the kinetics is presented. Computer simulations and experimental results from literature are also discussed in the framework of the present approach.
Politi, S., Tomellini, M. (2018). Kinetics of island growth in the framework of "planar diffusion zones" and "3D nucleation and growth" models for electrodeposition. JOURNAL OF SOLID STATE ELECTROCHEMISTRY, 22(10), 3085-3098 [10.1007/s10008-018-4011-2].
Kinetics of island growth in the framework of "planar diffusion zones" and "3D nucleation and growth" models for electrodeposition
S. Politi;M. Tomellini
2018-01-01
Abstract
In the electrochemical deposition of thin films, the measurement of the current-time curve does not allow for a direct determination of the nucleus growth law, electrode surface coverage, and mean film thickness. In this work, we present a theoretical approach suitable to gain insight into these quantities from the knowledge of nucleation density, solution parameters, and currenttime behavior. The model applies to both isotropic and anisotropic growth rates of nuclei and a study on the effect of nucleus shape and aspect ratio on the kinetics is presented. Computer simulations and experimental results from literature are also discussed in the framework of the present approach.File | Dimensione | Formato | |
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