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Beilstein J. Nanotechnol. 2025, 16, 254–263, doi:10.3762/bjnano.16.20
Figure 1: Study of the preferential accumulation of different metal nanoparticles synthesized by LAL at 85 °C...
Figure 2: Comparison of the gained mass fraction in the bottom phase for the TMS consisting of either propyle...
Figure 3: Zeta potential of copper nanoparticles in (a) 1-nonanol and (b) propylene carbonate obtained by LAL...
Figure 4: Mass fraction of colloidal nanoparticles in the propylene carbonate phase gained after LAL of (a) c...
Figure 5: Schematic representation of the thermomorphic solvent systems investigated in this study. The upper...
Beilstein J. Nanotechnol. 2024, 15, 638–663, doi:10.3762/bjnano.15.54
Figure 1: Variants of pulsed laser synthesis and processing in organic liquids as well as classification of t...
Figure 2: Anion solute effects on pulsed laser synthesis in water. (a) Effect of ionic strength on the gained...
Figure 3: Water splitting and gas formation during LAL of seven metals with increased standard electrochemica...
Figure 4: (a) Influence of hydroxyl radical scavengers on the size distribution obtained during the LRL of Au...
Figure 5: (a) Gas formation rates per laser pulse versus ablated gold per laser pulse. (b) Hydrogen formation...
Figure 6: a) Laser mass spectra obtained after femtosecond (red) and nanosecond (green) LRL of AuCl4− in a wa...
Figure 7: (a) Gas chromatograms (GC-TCD) showing the production of hydrogen and oxygen during LAL in water (b...
Figure 8: Scheme of the formation of hydrogen-capped polyynes during ns-LAL. The carbon source can be either ...
Figure 9: Carbon shell formation typology during LSPC in organic solvents. (a) Illustration of the laser abla...
Figure 10: Behavior of copper during LSPC in organic solvent. (a) LAL of a Cu target using wavelengths of 1064...
Figure 11: Current hypotheses on the carbon shell formation during LSPC in organic solvents. (a) Solvent decom...
Figure 12: (a) Quenching process during PLAL of metals in acetone and the proposed formation mechanism of diff...
Figure 13: (a) Schematic illustration of the laser melting of a particle in ethanol and the formed nanobubble ...
Figure 14: Comparison of irradiation of n-hexane with laser pulses with widths of 30 fs (blue) and 4 ps (magen...