Using wires of defined diameters instead of a planar target for pulsed laser ablation in liquid results in significant increase of ablation efficiency and nanoparticle productivity up to a factor of 15. We identified several competitive phenomena based on thermal conductivity, reflectivity and cavitation bubble shape that affect the ablation efficiency when the geometry of the target is changed. On the basis of the obtained results, this work represents an intriguing starting point for further developments related to the up-scaling of pulsed laser ablation in liquid environments at the industrial level
Silver nanoparticles were synthesized by laser ablation in liquid (water) using a 150-ps Nd:YAG lase...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
By irradiating a cylindrical silver target rotated at a high-speed within the range 300–2400 rpm (la...
To scale-up pulsed laser ablation in liquids for nanoparticle synthesis, we combine two promising ap...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
Sliver colloidal solutions were synthesized by Nd: YAG laser ablation 1064 nm of a high purity silve...
Abstract. The capabilities of laser ablation in liquids for fabrication of metallic and composite na...
Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ...
Pulsed laser ablation of metal samples in liquid environments by using a combination of two laser b...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
Laser ablation (LA) has proven itself as one of the most efficient physical methods for nanofabricat...
Silver nanoparticles were synthesized by laser ablation in liquid (water) using a 150-ps Nd:YAG lase...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
By irradiating a cylindrical silver target rotated at a high-speed within the range 300–2400 rpm (la...
To scale-up pulsed laser ablation in liquids for nanoparticle synthesis, we combine two promising ap...
Pulsed laser ablation in liquid (PLAL) is gradually becoming an attractive approach for nanomaterial...
In this paper, emission spectroscopy and fast imaging surveys during pulsed laser ablation in liquid...
Although the first nanoseconds to microseconds rule the resulting process yield of laser ablation in...
The preparation of spherical metallic nanoparticles (NPs), in the range of 10-100 nm, using pulsed l...
Experiments of collinear Double Pulse Laser Ablation in Liquid (DP-LAL) were carried out for studyin...
Sliver colloidal solutions were synthesized by Nd: YAG laser ablation 1064 nm of a high purity silve...
Abstract. The capabilities of laser ablation in liquids for fabrication of metallic and composite na...
Understanding shielding cross-effects is a prerequisite for maximal power-specific nanosecond laser ...
Pulsed laser ablation of metal samples in liquid environments by using a combination of two laser b...
In the last decade Pulsed Laser Ablation in Liquids (PLAL) has been widely investigated from the fun...
Laser ablation (LA) has proven itself as one of the most efficient physical methods for nanofabricat...
Silver nanoparticles were synthesized by laser ablation in liquid (water) using a 150-ps Nd:YAG lase...
In this work the effects of the pressure between 1–150 Bar on pulsed laser ablation in liquids (PLAL...
By irradiating a cylindrical silver target rotated at a high-speed within the range 300–2400 rpm (la...