Laser ablation synthesis in liquid solution (LASiS) is a \u201cgreen\u201d technique that gives access to the preparation of a library of nanomaterials. Bare noble metal spherical particles, multiphase core-shell oxides, metal-semiconductor heterostructures, layered organometallic compounds and other complex nanostructures can be obtained with the same experimental set up, just by varying few synthetic parameters. How to govern such versatility is one of the current challenges of LASiS and requires a thorough understanding of the physical and chemical processes involved in the synthesis. In this perspective, the fundamental mechanisms of laser ablation in liquids are summarized, organized according to their temporal sequence and correlated ...
Two decades after the first colloidal nanoparticles were generated with a laser, more than 350 insti...
As nanomaterials find applications in an increasingly diverse range of fields such as wastewater tre...
The control of the parameters that affect the physic-chemical properties of nanoparticles obtained b...
Nanoparticles represent important tools in modern nanotechnology thanks to their properties, as inte...
Functional nanoparticles are powerful tools in applied nanotechnology. In particular, noble metal na...
International audienceNanoparticles are already implemented as functional elements on surfaces and i...
Throughout the previous decade, extensive advancements have been made in the field of nanomaterial s...
Driven by an ever-increasing demand for nanomaterials with specific functionalities, physical synthe...
Laser ablation of bulk targets in a fluid — a promising new method for the synthesis of "pure" nanoc...
Nanomaterials with tailored structures and surface chemistry are in high demand, as these materials ...
International audienceDuring last decade, laser-based synthesis of nanoparticles and nanostructures ...
LASiS showed a great potential as a cost-competitive and green technique for obtaining easily functi...
In the past years, laser ablation synthesis in solution (LASiS) emerged as a reliable alternative to...
Laser ablation of solid targets in liquid environment allows the generation of nanoparticles (NPs) w...
Laser ablation of solid targets in liquid environment allows the generation of nanoparticles (NPs) w...
Two decades after the first colloidal nanoparticles were generated with a laser, more than 350 insti...
As nanomaterials find applications in an increasingly diverse range of fields such as wastewater tre...
The control of the parameters that affect the physic-chemical properties of nanoparticles obtained b...
Nanoparticles represent important tools in modern nanotechnology thanks to their properties, as inte...
Functional nanoparticles are powerful tools in applied nanotechnology. In particular, noble metal na...
International audienceNanoparticles are already implemented as functional elements on surfaces and i...
Throughout the previous decade, extensive advancements have been made in the field of nanomaterial s...
Driven by an ever-increasing demand for nanomaterials with specific functionalities, physical synthe...
Laser ablation of bulk targets in a fluid — a promising new method for the synthesis of "pure" nanoc...
Nanomaterials with tailored structures and surface chemistry are in high demand, as these materials ...
International audienceDuring last decade, laser-based synthesis of nanoparticles and nanostructures ...
LASiS showed a great potential as a cost-competitive and green technique for obtaining easily functi...
In the past years, laser ablation synthesis in solution (LASiS) emerged as a reliable alternative to...
Laser ablation of solid targets in liquid environment allows the generation of nanoparticles (NPs) w...
Laser ablation of solid targets in liquid environment allows the generation of nanoparticles (NPs) w...
Two decades after the first colloidal nanoparticles were generated with a laser, more than 350 insti...
As nanomaterials find applications in an increasingly diverse range of fields such as wastewater tre...
The control of the parameters that affect the physic-chemical properties of nanoparticles obtained b...