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Beilstein J. Nanotechnol. 2020, 11, 466–479, doi:10.3762/bjnano.11.38
Figure 1: (A) Geometrical description of the azobenzene derivatives used in the current study. (B) Scheme of ...
Figure 2: (A) SEM image of 2D-AzoC2, (B) SEM image of 2D-AzoOC4, (C) SEM image of 2D-AzoOC12, scale bar = 1 µ...
Figure 3: Energy-level diagram of 2D-AzoC2, 2D-AzoOC4 and 2D-AzoOC12 as function of the distance between the ...
Figure 4: (A–D) SEM images of particles with (A) AzoC1, (B) AzoC2, (C) AzoOC4 and (D) AzoOC12 ligands on the ...
Figure 5: (A) UV–vis absorption kinetics of 3D-AzoC2 in toluene over a time period of 600 s. (B) Decrease of ...
Figure 6: (A) Relative energy of MOs (S0, S1 and S2; see Table 2) of the azobenzene ligands and VB and CB of the per...
Figure 7: Comparison of the photoisomerisation and interfacial charge transfer processes for azobenzene incor...
Beilstein J. Nanotechnol. 2019, 10, 412–418, doi:10.3762/bjnano.10.40
Figure 1: Schematic drawing of activating inactive anatase TiO2 films: Scratching with an AFM tip causes the ...
Figure 2: SEM images with different magnifications after scratching (panel A1, using scanning probe lithograp...
Figure 3: A) SEM image after short hydrothermal growth on a scratched line. The line is written only a few ti...
Figure 4: Panels A to C show SEM images. Panel A is the selectively scratched area before hydrothermal growth...
Figure 5: SEM images of a sample where the anatase layer is covered with a 3 nm thin SiO2 layer. The scratche...