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The diffusion field of the signal molecule is shown in the right panel.
This trend is related to the generally known effect of convection on crystal growth, namely, the growth rate will decrease under microgravity conditions due to the primary extensity of a diffusion field around the growing crystal.
This phenomenon is explained by temporary changes in the diffusion field and the reaction zone.
The interfaces interact strongly via the diffusion field in the thin liquid layer between them.
With decreasing crystallization temperature, the branching morphology in a diffusion field appears: dendrites and compact seaweed.
A stable convective boundary condition (BC) for the diffusion field is developed which is proved to be an alternative BC to efficiently model the actual swelling process.
Similar(28)
Therefore, the theory of spherical steady-state diffusion fields around microdisk electrodes is used.
This configuration leads to essentially no overlap of diffusion fields when this electrode is used for amperometric detection.
However, these electrodes have substantially low mass transfer coefficients due to overlapping of diffusion fields between neighboring CNTs.
The theory of stationary diffusion fields at microdisk electrodes is adjusted and summarized.
Examples treated in detail include both planar and spherical diffusion fields.
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