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Beilstein J. Nanotechnol. 2025, 16, 581–590, doi:10.3762/bjnano.16.45
Figure 1: Schematic of the setup.
Figure 2: Diffusion flame of 0.05 slpm of LPG and 2 slpm of air (Φ = 0.77).
Figure 3: Stability of diffusion flames using LPG and air as inlet gases. The equivalence ratio is shown on t...
Figure 4: Premixed flame of LPG, nitrogen, and oxygen. (a) Flame at an equivalence ratio of 1.8. (b) The corr...
Figure 5: Growth regime using the premixed flame of LPG (the nitrogen flow rates determine the size of the ci...
Figure 6: Zirconia beads (a) before synthesis (b) after synthesis. Scale bars: 1 mm.
Figure 7: FESEM images of CNFs (Φ = 1.60). (a) Amorphous carbon. (b) CNFs of ring-like shape. (c) Randomly or...
Figure 8: FESEM images of CNF (Φ = 1.80). (a–c) Randomly oriented CNFs. (d) Diameter distribution of CNFs fou...
Figure 9: Raman shifts of CNFs (Φ = 1.80).
Beilstein J. Nanotechnol. 2023, 14, 741–750, doi:10.3762/bjnano.14.61
Figure 1: Line-of-sight images of standing flames and temperature distribution of (a,c) diffusion flame and (...
Figure 2: Average growth region temperature and the corresponding FESEM images of CNTs on nickel wire synthes...
Figure 3: Average CNT diameter distribution and average growth temperature for (a) diffusion flame and (b) pr...
Figure 4: Raman shifts of CNTs at low, high, and average HAB values for (a) diffusion and (b) premixed flame.
Figure 5: Laminar diffusion flame synthesis setup employing a traversing arm with an accuracy of 1 mm.
Figure 6: Schematic diagram of the premixed flame synthesis setup with quartz tube and traversing arm. The on...