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Beilstein J. Nanotechnol. 2019, 10, 419–427, doi:10.3762/bjnano.10.41
Figure 1: The schematic of graphitic CDC production via immobilization of transition-metal graphitization cat...
Figure 2: (a) TEM analysis of partially chlorinated carbide (CDC-shell) showing transparent CDC covering the ...
Figure 3: (a) XRD pattern and (b) the crystallite dimension for the in-plane (La) and cross section of multi-...
Figure 4: (a) Temperature-programmed oxidation profile of final CDC; (b) the calculated fraction of Area II r...
Figure 5: TEM images of CDC-Ni0 (a) and CDC-Ni60 (b,c).
Figure 6: (a) N2-sorption isotherm of final CDC material (closed and open symbols show the adsorption and des...
Figure 7: Examples of peak deconvolutions of XRD diffractograms at (a) C(002) and (b) C(100/101).
Beilstein J. Nanotechnol. 2012, 3, 674–683, doi:10.3762/bjnano.3.77
Figure 1: Focusing higher order laser modes with a parabolic mirror. (a) A sketch illustrating how a radial m...
Figure 2: SEM images of gold triangle arrays on silicon substrates which are fabricated using polystyrene sph...
Figure 3: Confocal luminescence images of gold Fischer patterns on a silicon substrate. The images were recor...
Figure 4: Confocal luminescence patterns of gold nano-triangles on silicon excited by an azimuthally polarise...
Figure 5: Confocal luminescence patterns of gold nano-triangles on glass excited by a radially polarised lase...
Figure 6: Confocal luminescence patterns of gold nano-triangles on glass excited by an azimuthally polarised ...
Figure 7: Calculated convolution of the intensity distribution in the azimuthal laser focus (upper row) and r...
Figure 8: Surface-enhanced Raman spectra of an adenine (sub-)monolayer on gold Fisher patterns on glass. The ...