The preparation of iron oxide nanoparticle dispersions of varying properties (e.g. color, crystal structure, particle size distribution) in a continuous hydrothermal pilot plant operating under near-critical and supercritical conditions with the aim of producing in situ functionalized nanoparticles suitable for secondary functionalization via click chemistry is reported. The effect of varying the mixing setup, reaction temperature and the starting material (iron salt) in the presence of different carboxylic acids on the resulting nanoparticle dispersions was investigated. The stability of the clickable ligands in the harsh hydrothermal environment was also tested and the clickability of the functionalized particles was demonstrated by means...
Continuous processes are always preferred over batch ones when reproducible and scalable industrial ...
The hydrothermal synthesis (HS) of α-Fe2O3 nanorods (NRs) is investigated using a combination of com...
The large-scale synthetic method of hydrophobic soluble Fe2O3 and Fe3O4 nanoparticles was developed ...
The preparation of iron oxide nanoparticle dispersions of varying properties (e.g. color, crystal st...
The preparation of iron oxide nanoparticle dispersions of varying properties (e.g. color, crystal st...
A study was conducted to demonstrate continuous hydrothermal synthesis of in situ functionalized iro...
The continuous hydrothermal flow synthesis of functionalized and non-functionalized nanoparticle dis...
Hydrothermal synthesis is a widely used technique for the preparation of fine particles. It can be c...
A novel valve-assisted pressure autoclave is described, facilitating ‘snapshot’ investigations of hy...
A new processing methodology is presented for the direct synthesis of surface-functionalized nanopar...
From all of the iron oxide nanoparticle (IONP) syntheses, thermal decomposition methods are the most...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
Iron oxide nanoparticles have received sustained interest for biomedical applications as synthetic a...
This thesis focuses on the synthesis and characterisation of nanomaterials produced using a continuo...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
Continuous processes are always preferred over batch ones when reproducible and scalable industrial ...
The hydrothermal synthesis (HS) of α-Fe2O3 nanorods (NRs) is investigated using a combination of com...
The large-scale synthetic method of hydrophobic soluble Fe2O3 and Fe3O4 nanoparticles was developed ...
The preparation of iron oxide nanoparticle dispersions of varying properties (e.g. color, crystal st...
The preparation of iron oxide nanoparticle dispersions of varying properties (e.g. color, crystal st...
A study was conducted to demonstrate continuous hydrothermal synthesis of in situ functionalized iro...
The continuous hydrothermal flow synthesis of functionalized and non-functionalized nanoparticle dis...
Hydrothermal synthesis is a widely used technique for the preparation of fine particles. It can be c...
A novel valve-assisted pressure autoclave is described, facilitating ‘snapshot’ investigations of hy...
A new processing methodology is presented for the direct synthesis of surface-functionalized nanopar...
From all of the iron oxide nanoparticle (IONP) syntheses, thermal decomposition methods are the most...
Iron (Fe) oxides and hydroxides are common and abundant materials. They exhibit diverse crystal stru...
Iron oxide nanoparticles have received sustained interest for biomedical applications as synthetic a...
This thesis focuses on the synthesis and characterisation of nanomaterials produced using a continuo...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
Continuous processes are always preferred over batch ones when reproducible and scalable industrial ...
The hydrothermal synthesis (HS) of α-Fe2O3 nanorods (NRs) is investigated using a combination of com...
The large-scale synthetic method of hydrophobic soluble Fe2O3 and Fe3O4 nanoparticles was developed ...