Biomineralisation processes invariably occur in the presence of multiple organic additives, which act in combination to give exceptional control over structures and properties. However, few synthetic studies have investigated the cooperative effects of soluble additives. This work addresses this challenge and focuses on the combined effects of amino acids and coloured dye molecules. The experiments demonstrate that strongly coloured calcite crystals only form in the presence of Brilliant Blue R (BBR) and four of the seventeen soluble amino acids, as compared with almost colourless crystals using the dye alone. The active amino acids are identified as those which themselves effectively occlude in calcite, suggesting a mechanism where they ca...
Structural biominerals are inorganic/organic composites that exhibit remarkable mechanical propertie...
Organic additives play key roles in controlling the precipitation of calcium carbonate in the enviro...
This work investigates the origin of the superior hardness of biogenic calcite by creating “model bi...
Biomineralisation processes invariably occur in the presence of multiple organic additives, which ac...
From biomineralization to synthesis, organic additives provide an effective means of controlling cry...
Biological organisms display sophisticated control of nucleation and crystallization of minerals. In...
Soluble additives provide a versatile strategy for controlling crystallization processes, enabling s...
Calix[4]arenes functionalised at the upper rim with acidic amino acid residues are found to have a s...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
Amorphous calcium carbonate is often the first phase to precipitate during the mineralisation of cal...
Crystal growth of inorganic materials, calcium carbonate, barium sulfate and calcium oxalate, was st...
The influence of soluble additives on the growth of calcite (CaCO3) is usually rationalized based on...
The formation of intricately shaped crystalline minerals by organisms is orchestrated by specialized...
Spontaneous precipitation of CaCO3 polymorphs in the presence of selected amino acids (AA) has been...
Biogenic crystals produced by organisms have been known for several decades to exhibit intracrystall...
Structural biominerals are inorganic/organic composites that exhibit remarkable mechanical propertie...
Organic additives play key roles in controlling the precipitation of calcium carbonate in the enviro...
This work investigates the origin of the superior hardness of biogenic calcite by creating “model bi...
Biomineralisation processes invariably occur in the presence of multiple organic additives, which ac...
From biomineralization to synthesis, organic additives provide an effective means of controlling cry...
Biological organisms display sophisticated control of nucleation and crystallization of minerals. In...
Soluble additives provide a versatile strategy for controlling crystallization processes, enabling s...
Calix[4]arenes functionalised at the upper rim with acidic amino acid residues are found to have a s...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
Amorphous calcium carbonate is often the first phase to precipitate during the mineralisation of cal...
Crystal growth of inorganic materials, calcium carbonate, barium sulfate and calcium oxalate, was st...
The influence of soluble additives on the growth of calcite (CaCO3) is usually rationalized based on...
The formation of intricately shaped crystalline minerals by organisms is orchestrated by specialized...
Spontaneous precipitation of CaCO3 polymorphs in the presence of selected amino acids (AA) has been...
Biogenic crystals produced by organisms have been known for several decades to exhibit intracrystall...
Structural biominerals are inorganic/organic composites that exhibit remarkable mechanical propertie...
Organic additives play key roles in controlling the precipitation of calcium carbonate in the enviro...
This work investigates the origin of the superior hardness of biogenic calcite by creating “model bi...