Nature often uses precursor phases for the controlled development of crystalline materials with well-defined morphologies and unusual properties. Mimicking such a strategy in in vitro model systems would potentially lead to the water-based, room-temperature synthesis of superior materials. In the case of magnetite (Fe3O4), which in biology generally is formed through a ferrihydrite precursor, such approaches have remained largely unexplored. Here we report on a simple protocol that involves the slow coprecipitation of FeIII/FeII salts through ammonia diffusion, during which ferrihydrite precipitates first at low pH values and is converted to magnetite at high pH values. Direct coprecipitation often leads to small crystals with superparamagn...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Control over magnetite (Fe3O4) formation is difficult to achieve in synthetic systems without using ...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Control over magnetite (Fe3O4) formation is difficult to achieve in synthetic systems without using ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Control over magnetite (Fe3O4) formation is difficult to achieve in synthetic systems without using ...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Nature often uses precursor phases for the controlled development of crystalline materials with well...
Control over magnetite (Fe3O4) formation is difficult to achieve in synthetic systems without using ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Magnetite (Fe3O4) is a widespread magnetic iron oxide encountered in many biological and geological ...
Control over magnetite (Fe3O4) formation is difficult to achieve in synthetic systems without using ...