Magnetic nanoparticles (MNPs) are widely investigated due to their potential use in various applications, ranging from electronics to biomedical devices. The magnetic properties of MNPs are strongly dependent on their size and shape (i.e., morphology), thus appropriate tools to investigate their morphology are fundamental to understand the physics of these systems. Recently a new approach to study nanoparticle morphology by Transmission Electron Microscopy (TEM) analysis has been proposed, introducing the so-called Aspect Maps (AMs). In this paper, a further evolution of the AM method is presented, allowing determination of the nanoparticles 3D shape by TEM image. As a case study, this paper will focus on magnetite nanoparticles (Fe3O4), wi...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...
Due to finite size effects, such as the high surface-to-volume ratio and different crystal structure...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...
Magnetic nanoparticles (MNPs) are widely investigated due to their potential use in various applicat...
Magnetic nanoparticles (MNPs) are widely investigated due to their potential use in various applicat...
Due to advances in electron microscopy and to the development of novel nanoparticle structures with ...
Magnetosomes are near-perfect intracellular magnetite nanocrystals found in magnetotactic bacteria. ...
Nanomagnets synthesized by the magnetotactic bacterium Magnetospirillum gryphiswaldense have been ch...
In this dissertation, two advanced TEM techniques, image spectroscopy and electron tomography, are a...
We studied the sizes and shapes of magnetite nanocrystals produced by several types of uncultured ma...
The formation of magnetites within magnetosomes is subjected to highly controlled biomineralization ...
We have investigated the evolution of microstructure and magnetic properties of thermally blocked ma...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
A three-step aqueous approach to obtain large (>50 nm) magnetite single-core particles has been deve...
For the first time, particle shape analysis of silica coated iron oxide (maghemite/magnetite) nanopa...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...
Due to finite size effects, such as the high surface-to-volume ratio and different crystal structure...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...
Magnetic nanoparticles (MNPs) are widely investigated due to their potential use in various applicat...
Magnetic nanoparticles (MNPs) are widely investigated due to their potential use in various applicat...
Due to advances in electron microscopy and to the development of novel nanoparticle structures with ...
Magnetosomes are near-perfect intracellular magnetite nanocrystals found in magnetotactic bacteria. ...
Nanomagnets synthesized by the magnetotactic bacterium Magnetospirillum gryphiswaldense have been ch...
In this dissertation, two advanced TEM techniques, image spectroscopy and electron tomography, are a...
We studied the sizes and shapes of magnetite nanocrystals produced by several types of uncultured ma...
The formation of magnetites within magnetosomes is subjected to highly controlled biomineralization ...
We have investigated the evolution of microstructure and magnetic properties of thermally blocked ma...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
A three-step aqueous approach to obtain large (>50 nm) magnetite single-core particles has been deve...
For the first time, particle shape analysis of silica coated iron oxide (maghemite/magnetite) nanopa...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...
Due to finite size effects, such as the high surface-to-volume ratio and different crystal structure...
This study aimed to systematically understand the magnetic properties of magnetite (Fe3O4) nanoparti...