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Beilstein J. Nanotechnol. 2019, 10, 746–759, doi:10.3762/bjnano.10.74
Figure 1: a) Growth per cycle (GPC) as a function of the plasma dose time. The saturation of the PE-ALD ZnO r...
Figure 2: High-resolution XPS spectra of the pristine (a–c) and annealed (d,e) zincone-like layers acquired a...
Figure 3: a) Normalized thickness (norm-d) and b) refractive index n (at 633 nm) of the zincone-like layers a...
Figure 4: In situ XRD measurements performed during calcination between 25 and 600 °C for the zincone-like la...
Figure 5: GIXD maps for the zincone-like layers deposited at different plasma times before and after annealin...
Figure 6: Estimated crystallite size D in the [100] direction as a function of the annealing temperature for ...
Figure 7: a) Example of an adsorption/desorption isotherm reported as volume of the adsorptive (Vads/Vfilm) a...
Beilstein J. Nanotechnol. 2017, 8, 933–942, doi:10.3762/bjnano.8.95
Figure 1: Molecular structure of the monomers PFDA and EGDMA.
Figure 2: FTIR spectra of p-PFDA films with different EGDMA cross-linker ratios in the as-prepared state (das...
Figure 3: AFM height micrographs of as-prepared (a) and heat-treated (b) p-PFDA films with different degrees ...
Figure 4: Water contact angle (WCA) (a) and root mean square surface roughness (σRMS) (b) of p-PFDA films wit...
Figure 5: (a) Specular X-ray diffraction patterns of a p-PFDA film and a cross-linked alteration thereof with...
Figure 6: In situ spectroscopic ellipsometry data depicting film thickness evolution as a function of tempera...
Figure 7: Normalized film thickness and the refractive index nd (at λ = 589.3 nm) as a function of the temper...
Figure 8: Coefficient of linear thermal expansion, α, as a function of EGDMA cross-linker fraction for variou...