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Beilstein J. Nanotechnol. 2017, 8, 2719–2728, doi:10.3762/bjnano.8.271
Figure 1: Schematic setup for the growth of carbon nanofibers in an open ethanol flame. The sample is placed ...
Figure 2: (a) Time series of an experiment showing the growth of CNFs in an open ethanol flame. For compariso...
Figure 3: Morphology and Raman spectra of the obtained CNFs for (a) randomly oriented CNFs and (b) oriented C...
Figure 4: (a) C 1s XP spectrum of the grown carbon structures. The main component at 284.4 eV indicates sp2-h...
Figure 5: Summary of experiments resulting in CNF growth (green circles) or in no CNF growth (red triangles)....
Figure 6: Force–distance diagrams obtained through atomic force microscopy. A spherical tip with a diameter o...
Figure 7: (a) The measured adhesion force as a function of the preload force and (b) the calculated adhesion ...
Figure 8: AFM-based long-term adhesion measurement with (a) the adhesion force and (b) the adhesion energy pl...
Beilstein J. Nanotechnol. 2017, 8, 906–914, doi:10.3762/bjnano.8.92
Figure 1: A schematic of the foaming process showing the critical steps to obtain a sample with a controlled ...
Figure 2: SEM images of the cross section with a gradient of pores before and after indentation. (a) The orig...
Figure 3: Pore distribution for the indentation columns 1 (top) and 5 (bottom). All presented data fit to a l...
Figure 4: Relation between pore wall thickness, pore diameter, and pore fraction in micro-to-nanocellular PMM...
Figure 5: Storage and loss moduli (a) and loss factor (b) measured on the 5 × 4 arrays with flat-punch indent...
Figure 6: Change of the number- (Mn) and mass- (Mw) average of the molar mass in PMMA before and after foamin...