Designer Patterns: Flexible Control of Precipitation through Electric Currents

Abstract

Precipitation patterns generated by A++B- --> C type reaction-diffusion processes are studied. It is shown both theoretically and experimentally that the patterns can be controlled by an appropriately designed, time-dependent electric current in the system. We describe examples of current dynamics yielding periodic bands of prescribed wavelength, as well as more complicated structures. The pattern control is demonstrated experimentally on the reaction-diffusion-precipitation process 2AgNO3+K2Cr2O7 --> Ag2Cr2O7+2KNO3 taking place in a gel.

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