none8siInclusion of additives into calcite crystals allows one to embed non-native proprieties into the inorganic matrix and obtain new functional materials. Up to now, few parameters have been taken into account to evaluate the efficiency of inclusion of an additive. Taking inspiration from Nature, we grew calcite crystals in the presence of fluorescent silica nanoparticles carrying different functional groups (PluS-X) to investigate the effect of surface chemistry on the inclusion of additives. PluS-X allowed us to keep constant all the particle characteristics, including size and morphology, while changing exposed functional groups and thus zeta potential. The effect on crystal morphology and structure, the loading, and distribution of P...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
Calcite, the most thermodynamically stable form of calcium carbonate (CaCO3), is commonly found in n...
The work in this thesis explores the ability of cationic additives to direct the crystallization of ...
From biomineralization to synthesis, organic additives provide an effective means of controlling cry...
As crystallization processes are often rapid, it can be difficult to monitor their growth mechanisms...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
The influence of soluble additives on the growth of calcite (CaCO3) is usually rationalized based on...
Biominerals are invariably composite materials, where occlusion of organic macromolecules within sin...
© 2016 American Chemical Society. The formation of calcite (CaCO3), the most abundant carbonate mine...
Organic additives play key roles in controlling the precipitation of calcium carbonate in the enviro...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
none8siCalcite has the capability to interact with a wide variety of molecules. This usually induces...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...
Calcite, the most thermodynamically stable form of calcium carbonate (CaCO3), is commonly found in n...
The work in this thesis explores the ability of cationic additives to direct the crystallization of ...
From biomineralization to synthesis, organic additives provide an effective means of controlling cry...
As crystallization processes are often rapid, it can be difficult to monitor their growth mechanisms...
This work was supported by an FP7 advanced grant from the European Research Council (JNC and IKR), b...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
The influence of soluble additives on the growth of calcite (CaCO3) is usually rationalized based on...
Biominerals are invariably composite materials, where occlusion of organic macromolecules within sin...
© 2016 American Chemical Society. The formation of calcite (CaCO3), the most abundant carbonate mine...
Organic additives play key roles in controlling the precipitation of calcium carbonate in the enviro...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
none8siCalcite has the capability to interact with a wide variety of molecules. This usually induces...
In principle, nanoparticle occlusion within crystals provides a straightforward and efficient route ...
Crystallization is widely used by synthetic chemists as a purification technique because it usually ...
Block copolymer nanoparticles are versatile crystal growth additives that can be used to both modify...