Nanotechnology · 2016 · 146 citations · 42 references
Materials ScienceRepetition RateChemical EngineeringColloidal MaterialEngineeringCatalysis-relevant NanoparticlesAdvanced Laser ProcessingNanomaterialsNanotechnologyMetal NanoparticlesLaser AblationColloidal NanocrystalsPilot-scale SynthesisLaser Processing TechnologyChemistryLaser-assisted Deposition
The synthesis of catalysis-relevant nanoparticles such as platinum and gold is demonstrated with productivities of 4 g h(-1) for pulsed laser ablation in liquids (PLAL). The major drawback of low productivity of PLAL is overcome by utilizing a novel ultrafast high-repetition rate laser system combined with a polygon scanner that reaches scanning speeds up to 500 m s(-1). This high scanning speed is exploited to spatially bypass the laser-induced cavitation bubbles at MHz-repetition rates resulting in an increase of the applicable, ablation-effective, repetition rate for PLAL by two orders of magnitude. The particle size, morphology and oxidation state of fully automated synthesized colloids are analyzed while the ablation mechanisms are studied for different laser fluences, repetition rates, interpulse distances, ablation times, volumetric flow rates and focus positions. It is found that at high scanning speeds and high repetition rate PLAL the ablation process is stable in crystallite size and decoupled from shielding and liquid effects that conventionally occur during low-speed PLAL.
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New interpretations of XPS spectra of nickel metal and oxides
Andrew P. Grosvenor, Mark C. Biesinger, Roger St.C. Smart et al. · Surface Science · 2006 · 2.2K citations
Paul Mannion, J. Magee, Edward Coyne et al. · Applied Surface Science · 2004 · 597 citations
Materials Science, Ablation Thresholds, Damage Morphology +10