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Beilstein J. Nanotechnol. 2014, 5, 1749–1759, doi:10.3762/bjnano.5.185
Figure 1: TM-AFM height images of Keggin POM (a,b), and Wells–Dawson POM (c,d) deposited on mica and HOPG sur...
Figure 2: Schematic representation of the arrangement of Keggin and WD POM on mica and HOPG surfaces.
Figure 3: TM-AFM height images of DODA deposited on a) HOPG and b) mica. Corresponding cross-section analyses...
Figure 4: TM-AFM images of the different DODA–POM hybrids deposited on HOPG. a) Hybrids made from Keggin POM,...
Figure 5: Supramolecular organization of DODA–POM hybrids on HOPG and mica surfaces.
Figure 6: TM-AFM images of the different DODA-POM hybrids deposited on mica surface. a) Hybrids made from Keg...
Figure 7: XPS analysis showing the core levels of different POMs and DODA–POM hybrids deposited on mica and H...
Figure 8: TM-AFM images of the UV–ozone-treated DODA–Keggin POM hybrid deposited on HOPG. a) Treatment time 1...
Beilstein J. Nanotechnol. 2014, 5, 68–76, doi:10.3762/bjnano.5.6
Figure 1: (a) AFM image of the mesoporous TiO2 film and (b) TEM image showing the ordered–desordered regions ...
Figure 2: AFM images showing size evolution of CdS particles grown on mesoporous TiO2 with different number o...
Figure 3: TEM image of the for 15×CdS/TiO2 sample.
Figure 4: Absorption spectra of the CdS-sensitized titanium dioxide films after different numbers of depositi...
Figure 5: XPS analysis. Spectra of Ti 2p, O 1s, C 1s, Cd 3d and S 2p, and core peaks for 15×CdS/TiO2 sample.
Figure 6: (a) CdS particle size calculated by Davis model vs NIR (normalized intensity ratio calculated from ...