Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nanoparticles enabling the cells to align with the geomagnetic field. The bacteria produce a magnetic mineral of species-specific phase (magnetite Fe(II)Fe(III)2O4 or greigite Fe(II)Fe(III)2S4), size, morphology and particle assembly. Several species produce crystals of unusual elongated particle shapes, which break the symmetry of the thermodynamically favoured isometric morphology. Such morphologies are thought to affect domain size and orientation of the internal magnetization. Therefore, they are interesting study objects to develop new synthetic strategies for the morphological control of nanoparticles. We investigate the formation of such i...
Magnetotactic bacteria have evolved complex subcellular machinery to construct linear chains of magn...
Magnetotactic bacteria are known to mediate the formation of intracellular magnetic nanoparticles in...
Magnetotactic bacteria orient and migrate along magnetic field lines. This ability is based on a sub...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
A slowly moving, rod-shaped magnetotactic bacterium was found in relatively large numbers at and bel...
Living organisms often exploit solid but poorly ordered mineral phases as precursors in the biominer...
International audienceBiomineralization of magnetite is a central geomicrobiological process that mi...
Magnetite produced by magnetotactic bacteria (MTB) provides stable paleomagnetic signals because it ...
Magnetotactic bacteria synthesize intracellular, enveloped, single magnetic domain crystals of magne...
Intracellular crystals of magnetite synthesized by cells of the magnetotactic vibroid organism, MV-1...
Biomineralization in the microbial realm usually gives origin to finely structured inorganic nanomat...
We show that by reacting ferrihydrite (FeH) with Fe(II) ions and subsequently increasing the pH, mag...
Magnetotactic bacteria have evolved complex subcellular machinery to construct linear chains of magn...
Magnetotactic bacteria are known to mediate the formation of intracellular magnetic nanoparticles in...
Magnetotactic bacteria orient and migrate along magnetic field lines. This ability is based on a sub...
Magnetotactic bacteria are aquatic microorganisms that intracellularly mineralize ferrimagnetic nano...
A slowly moving, rod-shaped magnetotactic bacterium was found in relatively large numbers at and bel...
Living organisms often exploit solid but poorly ordered mineral phases as precursors in the biominer...
International audienceBiomineralization of magnetite is a central geomicrobiological process that mi...
Magnetite produced by magnetotactic bacteria (MTB) provides stable paleomagnetic signals because it ...
Magnetotactic bacteria synthesize intracellular, enveloped, single magnetic domain crystals of magne...
Intracellular crystals of magnetite synthesized by cells of the magnetotactic vibroid organism, MV-1...
Biomineralization in the microbial realm usually gives origin to finely structured inorganic nanomat...
We show that by reacting ferrihydrite (FeH) with Fe(II) ions and subsequently increasing the pH, mag...
Magnetotactic bacteria have evolved complex subcellular machinery to construct linear chains of magn...
Magnetotactic bacteria are known to mediate the formation of intracellular magnetic nanoparticles in...
Magnetotactic bacteria orient and migrate along magnetic field lines. This ability is based on a sub...