Many organisms build crystals with almost complete control over all aspects of crystal formation, from nucleation to growth, from composition to polymorphic structure, and from morphology to size. In biomineralization, the control is fundamentally always exerted at the level of nanometers, because the building blocks themselves are at the nanoscale. We have chosen to describe in some detail four biological systems that produce nanoscale crystals using different mineralization pathways, different levels of control, and have different functions. These four cases are: bone crystal composites; guanine nanocrystal reflectors; magnetotactic bacteria with single domain magnets; and coccoliths, whose functions have yet to be identified. This is fol...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Many organisms build crystals with almost complete control over all aspects of crystal formation, fr...
Biomineralization is a frequently used term in nanotechnology, astrobiology, geology, and medicine. ...
Organisms routinely produce minerals, called biominerals, with altered materials properties compared...
For at least six hundred million years, life has been a fascinating laboratory of crystallization, r...
Living organisms can produce inorganic materials with unique structure and properties. The biominera...
The three projects within this work address the difficulties of controlling biomolecular crystal for...
\u3cp\u3eLiving organisms can produce inorganic materials with unique structure and properties. The ...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Biomineralization refers to the production of mineralized tissues by organisms. The fine control wh...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Many organisms build crystals with almost complete control over all aspects of crystal formation, fr...
Biomineralization is a frequently used term in nanotechnology, astrobiology, geology, and medicine. ...
Organisms routinely produce minerals, called biominerals, with altered materials properties compared...
For at least six hundred million years, life has been a fascinating laboratory of crystallization, r...
Living organisms can produce inorganic materials with unique structure and properties. The biominera...
The three projects within this work address the difficulties of controlling biomolecular crystal for...
\u3cp\u3eLiving organisms can produce inorganic materials with unique structure and properties. The ...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
At least since the explosion of diversity that life experienced about 540 million years ago, multice...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...
Biomineralization refers to the production of mineralized tissues by organisms. The fine control wh...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Magnetite nanoparticles possess numerous fundamental, biomedical and industrial applications, many o...
Cellular machineries guide the bottom-up pathways toward crystal superstructures based on the transp...