Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in liquid, a comprehensive view involving combination of time-resolved measurement techniques is still lacking. In this paper, fundamental aspects of laser ablation of metals underwater during the production of nanoparticles are discussed. Three fast diagnostic methods have been applied simultaneously. These are Optical Emission Spectroscopy for the plasma characterization, fast shadowgraph for plasma and cavitation bubble dynamics and laser scattering for the mechanisms of delivery of the produced materials in the liquid. Moreover, in order to validate the discussion, the effect on cavitation dynamics of the ablation of bulk and wire-shaped ta...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
Laser ablation (LA) has proven itself as one of the most efficient physical methods for nanofabricat...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
In this work, the dynamics of multiple cavitation bubbles produced by femtosecond laser ablation of ...
International audienceLaser ablation in liquids is now commonly used to produce colloidal nanopartic...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
We use a state-of-the-art, ultrafast camera to probe the nanosecond pulse laser ablation of a metall...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ...
Using wires of defined diameters instead of a planar target for pulsed laser ablation in liquid resu...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
Laser ablation (LA) has proven itself as one of the most efficient physical methods for nanofabricat...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
In this work, the dynamics of multiple cavitation bubbles produced by femtosecond laser ablation of ...
International audienceLaser ablation in liquids is now commonly used to produce colloidal nanopartic...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
We use a state-of-the-art, ultrafast camera to probe the nanosecond pulse laser ablation of a metall...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ...
Using wires of defined diameters instead of a planar target for pulsed laser ablation in liquid resu...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
International audienceWe numerically examine the mechanisms involved in nanoparticle formation by la...
Laser ablation (LA) has proven itself as one of the most efficient physical methods for nanofabricat...