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Beilstein J. Nanotechnol. 2013, 4, 793–804, doi:10.3762/bjnano.4.90
Figure 1: SEM (A, B, D and E) and TEM (C and F) images of silica nanotubes synthesized by alkali-induced room...
Figure 2: N2 adsorption/desorption isotherms (A) and BJH pore-size distribution curve obtained from the adsor...
Figure 3: (A) Solid state 29Si CP MAS NMR spectra of LPEI@silica hybrid nanotubes formed after silicification...
Figure 4: SEM (A, B, D and E) and TEM (C and F) images of silica prepared with molar ratios [OH]/[EI] of 0.56...
Figure 5: XRD profiles of LPEI aggregates (A) and LPEI@silica hybrid nanostructures (B). The LPEI aggregates ...
Scheme 1: Proposed formation mechanism of the polyamine-aggregate template for silica nanotubes and nanowires...
Figure 6: N2 adsorption/desorption isotherms (A) and BJH pore-size distribution curves obtained from the adso...
Figure 7: SEM images of silica structures, which were formed by adding different amounts of ammonia solution ...
Figure 8: Phosphorescence emission spectra (λEx = 320 nm) of silica nanotubes and nanoribbons that were synth...
Figure 9: TGA (A) and Raman spectra (B) of silica/carbon composite nanotubes. The samples of a (0.8 wt % carb...
Figure 10: TEM images of silica/carbon composite mats with a nanofibrous network prepared by calcining LPEI@si...