Microbial production of iron (oxyhydr)oxides on polysaccharide rich biopolymers occurs on such a vast scale that it impacts the global iron cycle and has been responsible for major biogeochemical events. Yet the physiochemical controls these biopolymers exert on iron (oxyhydr)oxide formation are poorly understood. Here we used dynamic force spectroscopy to directly probe binding between complex, model and natural microbial polysaccharides and common iron (oxyhydr)oxides. Applying nucleation theory to our results demonstrates that if there is a strong attractive interaction between biopolymers and iron (oxyhydr)oxides, the biopolymers decrease the nucleation barriers, thus promoting mineral nucleation. These results are also supported by nuc...
Higher organisms as well as medical and technological materials exploit mineral-polymer interactions...
Ferritin (Fn) proteins or their isolated subunits can be used as biomolecular templates for the sele...
Metallo-oxide (MO)-based bioinorganic nanocomposites promise unique structures, physicochemical prop...
Microbial production of iron (oxyhydr)oxides on polysaccharide rich biopolymers occurs on such a vas...
Microbial production of iron (oxyhydr)oxides on polysaccharide rich biopolymers occurs on such a vas...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
We studied biomimetic mineralization of self-assembling polymer matrices in order to develop a model...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
© 2016 Author(s).The interplay between polymers and inorganic minerals during the formation of solid...
The biomimetic production of micro- and nanostructures from magnetic materials is a suitable way to ...
The transportation and immobilization of potentially toxic metals in near-surface environments may b...
International audienceIron oxidation at neutral pH by the phototrophic anaerobic iron-oxidizing bact...
Iron-reducing microorganisms, like Shewanella oneidensis, have received a great deal of attention in...
Iron oxidation at neutral pH by the phototrophic anaerobic iron-oxidizing bacterium Rhodobacter sp. ...
Formation of magnetite nanocrystals by magnetotactic bacteria is controlled by specific proteins whi...
Higher organisms as well as medical and technological materials exploit mineral-polymer interactions...
Ferritin (Fn) proteins or their isolated subunits can be used as biomolecular templates for the sele...
Metallo-oxide (MO)-based bioinorganic nanocomposites promise unique structures, physicochemical prop...
Microbial production of iron (oxyhydr)oxides on polysaccharide rich biopolymers occurs on such a vas...
Microbial production of iron (oxyhydr)oxides on polysaccharide rich biopolymers occurs on such a vas...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
We studied biomimetic mineralization of self-assembling polymer matrices in order to develop a model...
Nucleation of minerals in the presence of additives is critical for achieving control over the forma...
© 2016 Author(s).The interplay between polymers and inorganic minerals during the formation of solid...
The biomimetic production of micro- and nanostructures from magnetic materials is a suitable way to ...
The transportation and immobilization of potentially toxic metals in near-surface environments may b...
International audienceIron oxidation at neutral pH by the phototrophic anaerobic iron-oxidizing bact...
Iron-reducing microorganisms, like Shewanella oneidensis, have received a great deal of attention in...
Iron oxidation at neutral pH by the phototrophic anaerobic iron-oxidizing bacterium Rhodobacter sp. ...
Formation of magnetite nanocrystals by magnetotactic bacteria is controlled by specific proteins whi...
Higher organisms as well as medical and technological materials exploit mineral-polymer interactions...
Ferritin (Fn) proteins or their isolated subunits can be used as biomolecular templates for the sele...
Metallo-oxide (MO)-based bioinorganic nanocomposites promise unique structures, physicochemical prop...