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Beilstein J. Nanotechnol. 2015, 6, 2345–2353, doi:10.3762/bjnano.6.242
Figure 1: (a) XPS survey spectra of 1% (v/v) APTES-functionalized glass substrate (24 h); (b) high resolution...
Figure 2: Schematic representation of the possible orientations of APTES molecules on -OH terminated glass su...
Figure 3: Water contact angles showing wetting behavior of APTES-functionalized glass substrates.
Figure 4: Different surface morphologies of AuNPs attachment on APTES-functionalized glass substrates.
Figure 5: (a) UPS spectra of bare glass, APTES deposited on glass substrate and AuNPs deposited on APTES-func...
Figure 6: UPS spectra of (a) AuNPs deposited on APTES-functionalized glass substrates with 24 h APTES deposit...
Figure 7: AFM images of Au NPs deposited on silanized glass substrates, (a) without annealing (as deposited) ...
Figure 8: UV–visible absorption spectra of AuNPs deposited on APTES-functionalized glass substrate without an...
Beilstein J. Nanotechnol. 2011, 2, 681–690, doi:10.3762/bjnano.2.73
Figure 1: FESEM images showing (a) the top view and (b) the cross-sectional view of the bare ZnO-nanorod phot...
Figure 2: (a) Optical absorption of ZnO nanorods, ZnO/Au-nanocomposite photoelectrode and Au-nanoparticle col...
Figure 3: (a) J–V characteristics of the bare ZnO-nanorod and ZnO/Au-nanocomposite DSSCs, measured at 1 sun, ...
Figure 4: Energy-band diagram depicting the possible electron-transfer path in the ZnO/Au-nanocomposite DSSC,...
Figure 5: (a) PL spectra and (b) PL transients of the C343 dye observed at 480 nm in the presence and absence...