Supercritical antisolvent (SAS) micronization has been used to obtain nanoparticles and micro-particles of several kinds of materials. Sometimes hollow expanded micro-particles have also been obtained. This work is focused on the analysis of this last morphology. We organized literature data and our previous experiments and we added new experiments on previously tested compounds and on compounds never tested before. As a result, expanded micro-particles using several compounds belonging to different categories and precipitated from different solvents in laboratory and pilot scale plants were obtained with diameters between about 10 and 180 μm. They also showed different sub-structures: uniform or nanostructured surface or constituted by mic...
The solid state morphology of many compounds is a key-parameter for their further utilization when s...
The supercritical antisolvent process (SAS) has been frequently used to obtain microparticles and n...
In this work, the precipitation of a model compound (cefonicid) from DMSO by Supercritical Antisolve...
Supercritical antisolvent (SAS) micronization has been used to obtain nanoparticles and micro-partic...
Supercritical antisolvent micronization (SAS) has been used to obtain microparticles of several kind...
Supercritical antisolvent micronization has been the subject of many works aimed at the production o...
This dissertation involves a detailed discussion of the production of organic and polymeric micropar...
Supercritical antisolvent precipitation (SAS) has been successfully used to produce microparticles a...
In this work, the jet break-up and the phases formation during the Supercritical Antisolvent (SAS) p...
An experimental study on supercritical antisolvent (SAS) precipitation has been performed to gain in...
Supercritical Assisted Atomization (SAA) has been proposed to produce micro particles. SAA is bas...
The use of supercritical fluids in the area of material processing and for particle formation has be...
The solid state morphology of many compounds is a key-parameter for their further utilization when s...
The supercritical antisolvent process (SAS) has been frequently used to obtain microparticles and n...
In this work, the precipitation of a model compound (cefonicid) from DMSO by Supercritical Antisolve...
Supercritical antisolvent (SAS) micronization has been used to obtain nanoparticles and micro-partic...
Supercritical antisolvent micronization (SAS) has been used to obtain microparticles of several kind...
Supercritical antisolvent micronization has been the subject of many works aimed at the production o...
This dissertation involves a detailed discussion of the production of organic and polymeric micropar...
Supercritical antisolvent precipitation (SAS) has been successfully used to produce microparticles a...
In this work, the jet break-up and the phases formation during the Supercritical Antisolvent (SAS) p...
An experimental study on supercritical antisolvent (SAS) precipitation has been performed to gain in...
Supercritical Assisted Atomization (SAA) has been proposed to produce micro particles. SAA is bas...
The use of supercritical fluids in the area of material processing and for particle formation has be...
The solid state morphology of many compounds is a key-parameter for their further utilization when s...
The supercritical antisolvent process (SAS) has been frequently used to obtain microparticles and n...
In this work, the precipitation of a model compound (cefonicid) from DMSO by Supercritical Antisolve...