Magnetite (Fe3O4) nanoaggregates with a flower-like morphology are considered promising materials in the field of magnetically induced hyperthermia in cancer therapy due to their good heating efficiency at low applied alternating magnetic fields. Although the structure and the magnetic state of such flower-like aggregates have been investigated previously, the mechanism that leads to the hierarchical morphology is still poorly understood. Here, we study the formation mechanism of Fe3O4 aggregates synthesized through the partial oxidation of ferrous hydroxide in the presence of poly(acrylic acid) by using cryogenic electron microscopy. The aggregates are formed through a multistep process involving first the conversion of ferrous hydroxide p...
Three simple capping molecules (urea, 3-aminopropanol, and polyethylene glycol) with different funct...
Inspired by chains of ferrimagnetic nanocrystals (NCs) in magnetotactic bacteria (MTB), the synthesi...
We have investigated the evolution of microstructure and magnetic properties of thermally blocked ma...
Magnetite (Fe3O4) nanoaggregates with a flower-like morphology are considered promising materials in...
This letter describes the formation and detailed characterization of iron oxide mesocrystals produce...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
Biological systems show impressive control over the shape, size and organization of mineral structur...
Magnetic magnetite (Fe3O4) nanocrystals have been synthesized by combining nonhydrolytic reaction wi...
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
We studied biomimetic mineralization of self-assembling polymer matrices in order to develop a model...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
Many magnetotactic bacteria (MTB) biomineralize magnetite crystals that nucleate and grow inside int...
This work discusses the influence of synthesis conditions on self-assembly capability and morphology...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
The hydrothermal synthesis of Fe3O4 nanoparticles (NPs) (< 50 nm) from mixed FeCl3 / FeCl2 precursor...
Three simple capping molecules (urea, 3-aminopropanol, and polyethylene glycol) with different funct...
Inspired by chains of ferrimagnetic nanocrystals (NCs) in magnetotactic bacteria (MTB), the synthesi...
We have investigated the evolution of microstructure and magnetic properties of thermally blocked ma...
Magnetite (Fe3O4) nanoaggregates with a flower-like morphology are considered promising materials in...
This letter describes the formation and detailed characterization of iron oxide mesocrystals produce...
This thesis is focused on the fabrication and characterization of self-assembled arrays of magnetic ...
Biological systems show impressive control over the shape, size and organization of mineral structur...
Magnetic magnetite (Fe3O4) nanocrystals have been synthesized by combining nonhydrolytic reaction wi...
The properties of nanocrystals are highly dependent on their morphology, composition and structure. ...
We studied biomimetic mineralization of self-assembling polymer matrices in order to develop a model...
A precise control over the meso-and microstructure of ordered and aligned nanoparticle assemblies, i...
Many magnetotactic bacteria (MTB) biomineralize magnetite crystals that nucleate and grow inside int...
This work discusses the influence of synthesis conditions on self-assembly capability and morphology...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
The hydrothermal synthesis of Fe3O4 nanoparticles (NPs) (< 50 nm) from mixed FeCl3 / FeCl2 precursor...
Three simple capping molecules (urea, 3-aminopropanol, and polyethylene glycol) with different funct...
Inspired by chains of ferrimagnetic nanocrystals (NCs) in magnetotactic bacteria (MTB), the synthesi...
We have investigated the evolution of microstructure and magnetic properties of thermally blocked ma...