In nature and technology there are many examples of micron sized optical systems based on minerals. The thermodynamically most stable polymorph of calcium carbonate (CaCO3) –calcite– exhibits birefringence. However, nature uses biomineralization approaches to produce CaCO3 based optical functional materials, for example calcite mircrolens arrays as part of the photoreceptor system of brittlestars, amorphous CaCO3 (ACC) plant cystoliths as light scatterers and calcite trilobite eyes. In this short review, we illustrate basic strategies to produce optical materials from CaCO3 by manipulating the material structure. These strategies are driven by the aim to eliminate or reduce the birefringent properties of calcite, or even, to turn this prope...
Biomimetic mineralization can lead to advanced crystalline composites with common chemicals under am...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
Biominerals provide excellent mechanical properties for skeletal support and protection, rivaling an...
In nature and technology there are many examples of micron sized optical systems based on minerals. ...
The whole range of organic-inorganic hybrid materials are generally molded into specifically designe...
The work in this thesis explores the ability of cationic additives to direct the crystallization of ...
The often astonishing material properties of crystalline biominerals are generally related to the hi...
Biological materials are often based on simple constituents and grown by the principle of self-assem...
International audienceCalcium carbonate (CaCO3) is an important inorganic mineral in biological and ...
A new approach involving the in situ hydrolysis of diethyl carbonate in calcium-containing solution ...
In nature, calcium carbonate (CaCO3) in the form of calcite and aragonite nucleates through differen...
Amorphous calcium carbonate (ACC) is a key precursor of crystalline CaCO3 biominerals and biomimetic...
Organisms can control the shapes and sizes of inorganic nanocrystals and arrange them into ordered s...
Biomineralization is an important approach to prepare biomimetic materials. Mineralized materials wi...
Nature offers outstanding examples of multifunctional complex structures able to address different n...
Biomimetic mineralization can lead to advanced crystalline composites with common chemicals under am...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
Biominerals provide excellent mechanical properties for skeletal support and protection, rivaling an...
In nature and technology there are many examples of micron sized optical systems based on minerals. ...
The whole range of organic-inorganic hybrid materials are generally molded into specifically designe...
The work in this thesis explores the ability of cationic additives to direct the crystallization of ...
The often astonishing material properties of crystalline biominerals are generally related to the hi...
Biological materials are often based on simple constituents and grown by the principle of self-assem...
International audienceCalcium carbonate (CaCO3) is an important inorganic mineral in biological and ...
A new approach involving the in situ hydrolysis of diethyl carbonate in calcium-containing solution ...
In nature, calcium carbonate (CaCO3) in the form of calcite and aragonite nucleates through differen...
Amorphous calcium carbonate (ACC) is a key precursor of crystalline CaCO3 biominerals and biomimetic...
Organisms can control the shapes and sizes of inorganic nanocrystals and arrange them into ordered s...
Biomineralization is an important approach to prepare biomimetic materials. Mineralized materials wi...
Nature offers outstanding examples of multifunctional complex structures able to address different n...
Biomimetic mineralization can lead to advanced crystalline composites with common chemicals under am...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
Biominerals provide excellent mechanical properties for skeletal support and protection, rivaling an...