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Beilstein J. Nanotechnol. 2025, 16, 473–483, doi:10.3762/bjnano.16.36
Figure 1: Dependencies of the homogeneous stationary states xst on the substrate–adsorbate interaction streng...
Figure 2: Stability diagram for the first-order transitions at different (a) α and (b) potential V(x) at diff...
Figure 3: Stability diagram of the stationary homogeneous states to inhomogeneous perturbations at different ...
Figure 4: Typical evolution of (a) the morphology of surface of the thin film, (b) the mean adsorbate concent...
Figure 5: Dependencies of the incubation period tc on the substrate–adsorbate interaction strength δ at ε = 4...
Figure 6: Dependencies of (a) the mean stationary adsorbate concentration ⟨x⟩st and (b) the stationary value ...
Figure 7: Typical snapshots of the quasi-stationary patterns formed on the OCS (top row) and the MCS (bottom ...
Figure 8: Dependencies of (a) the number Nst of adsorbate islands at different α, (b) the mean radius ⟨R⟩st o...
Beilstein J. Nanotechnol. 2021, 12, 694–703, doi:10.3762/bjnano.12.55
Figure 1: A schematic view of the two-layers model. Effects of upper layers are ignored in the model.
Figure 2: Stability diagram k∥(α) at different values of the interaction strength ε.
Figure 3: Evolution of the mean adsorbate concentration ⟨x⟩ (top panel in Figure 3a) and the dispersion ⟨(δx)2⟩ (botto...
Figure 4: Stability diagram k∥(α) at ε = 4 and typical patterns in different domains: separated adsorbate isl...
Figure 5: Dependencies of the total amount of adsorbate clusters Ntot and number of percolating clusters Nperc...
Figure 6: Typical snapshots of the quasistationary surface patterns for different values of the electrical fi...
Figure 7: Dependencies of the total amount of adsorbate clusters Ntot and number of percolating clusters Nperc...
Figure 8: Dependence of the critical value of the electrical field strength on the adsorption coefficient α ...
Figure 9: (a) Typical snapshots of the system evolution after the electric field is turned off at k∥ = 0.1, α...