The formation of inorganic nanoparticles has been understood based on the classical crystallization theory described by a burst of nucleation, where surface energy is known to play a critical role, and a diffusion-controlled growth process. However, this nucleation and growth model may not be universally applicable to the entire nanoparticle systems because different precursors and surface ligands are used during their synthesis. Their intrinsic chemical reactivity can lead to a formation pathway that deviates from a classical nucleation and growth model. The formation of metal oxide nanoparticles is one such case because of several distinct chemical aspects during their synthesis. Typical carboxylate surface ligands, which are often employ...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
During the synthesis of nanoparticles via thermal decomposition of iron precursors, the capping liga...
Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis ...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
The formation of iron oxide nanoparticles obtained by the thermal decomposition of iron-oleate compl...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactantmediated t...
A molecular understanding of the formation of solid phases from solution would be beneficial for var...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
We describe here a chemically controlled pathway for the designed synthesis of iron oxide nanopartic...
The synthesis of iron oxide nanoparticles (NPs) by thermal decomposition of iron precursors using ol...
Ternary oxide nanoparticles have attracted much interest because of their intriguing properties, whi...
We studied the kinetics of the formation of iron oxide nanocrystals obtained from the solution-phase...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
During the synthesis of nanoparticles via thermal decomposition of iron precursors, the capping liga...
Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis ...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
The formation of iron oxide nanoparticles obtained by the thermal decomposition of iron-oleate compl...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactantmediated t...
A molecular understanding of the formation of solid phases from solution would be beneficial for var...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
We describe here a chemically controlled pathway for the designed synthesis of iron oxide nanopartic...
The synthesis of iron oxide nanoparticles (NPs) by thermal decomposition of iron precursors using ol...
Ternary oxide nanoparticles have attracted much interest because of their intriguing properties, whi...
We studied the kinetics of the formation of iron oxide nanocrystals obtained from the solution-phase...
Nucleation is a fundamental step in crystal growth. Of environmental and materials relevance are rea...
During the synthesis of nanoparticles via thermal decomposition of iron precursors, the capping liga...
Uniform superparamagnetic iron oxide nanoparticles were obtained by coprecipitation under synthesis ...