Polygonal boundary gaps in multiple diffusion source precipitation systems in gel media

Многоугольные границы-разрывы в системах осаждения с несколькими источниками диффузии в гелевой среде
Dalia Ezzeddine, Rabih Sultan
2022-08-01

chemical Voronoi diagramsenergy dispersive x-ray spectroscopy (EDX)gel mediuminterdiffusion of co-precipitatesmultiple diffusion sourcespolygonal boundary gapspowder x-ray diffraction (PXRD)precipitation zonesreaction-diffusion processesscanning electron microscopy (SEM)
We investigate multiple reaction-diffusion processes that engender the formation of distinct precipitation zones. In this paper, we carry out various original precipitation reactions in a gel medium, wherein the interdiffusion of the co-precipitates occurs from various sources arranged in a symmetric framework in 2D Petri dishes. The distinct precipitation zones are separated by clear polygonal boundaries, in congruence with the spatial distribution of the diffusion holes hosting the outer electrolyte. We use scanning electron microscopy, energy dispersive x-ray diffraction spectrometry, and notably powder x-ray diffraction for the characterization of the differentiated precipitate patterning zones for each system studied. The obtained patterns find their application niche in the chemical analogs of Voronoi diagrams and the rift scenery in geological landscapes.
1
Multiple reaction-diffusion experiments in gel with symmetrically arranged outer-electrolyte sources produce distinct precipitation zones separated by clear polygonal boundaries.
2
Scanning electron microscopy, energy dispersive X-ray spectrometry, and powder X-ray diffraction successfully characterize differentiated precipitate patterning zones for each studied system.
3
The observed precipitation patterns can serve as chemical analogs of Voronoi diagrams and model rift-like geological landscape features.
4
The polygonal boundary geometry corresponds to the spatial arrangement of diffusion holes hosting the outer electrolyte, linking source distribution to boundary shape.

Multiple reaction–diffusion precipitation systems in gel media with symmetrically arranged diffusion sources in 2D Petri dishes

Formation and characterization of distinct precipitation zones separated by polygonal boundary gaps (patterning, spatial arrangement, and phase identification) arising from interdiffusion of co-precipitates

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2022-08-01
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Authors
Dalia Ezzeddine
Rabih Sultan
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