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As a result, it seems that cluster diffusion contributes significantly to the structural evolution of platinum electrodeposits on graphite.
We have proposed already earlier a model describing the processes (i.e., the combined effect of cluster diffusion and chemical reactions) running in individual radical clusters that might be responsible for corresponding damages of DNA molecules (i.e., formation of DSBs).
The model is based on the Darken equation with the knowledge of intra-diffusion coefficients at infinite dilution of both species and viscosity data for the system, and takes into account the cluster diffusion approach with a scaling power on the thermodynamic correction factor.
In both of these analyses, single vacancy and self-interstitial diffusion inside grain boundaries, small vacancy cluster diffusion inside grain boundaries, and the binding energy of vacancies and self-interstitials to grain boundaries are shown to have the greatest impact on defect accumulation.
The model enables to study the concentrations of individual radicals changing during cluster diffusion and to estimate their damaging effects on corresponding DNA molecules in given cells.
We have started to study the corresponding problem earlier; the contemporary result of chemical reactions and cluster diffusion having been described with the help of corresponding differential equations.
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Calculation of distance from a cluster vs. diffusion coefficient and confinement vs. diffusion coefficient was enabled by taking the instantaneous diffusion coefficient into account.
A cluster's diffusion landscape can change during a simulation, as the cluster incorporates more entities containing a different set of diffusion landscapes, or when a cluster separates into two clusters and the inheritance of possible diffusion landscapes is unequal due to unequal entity composition.
Furthermore, in order to enhance the robustness for noisy data, considering mesh topology as a spatial constraint and letting the vertices in its surroundings belong to the same cluster by diffusion process, we protect generating many small fragments due to noise.
Rotation is restricted for clusters diffusing in the membrane diffusion landscape.
The presence of GO sheets is presumed to render multifunctional roles in facilitating the dispersion of metallic Pd clusters, ionic diffusion, and charge transfer.
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