Calcite aggregates are mineralized in an organic poly-acrylamide hydrogel using a counter diffusion arrangement. The particles obtained show a characteristic pseudo-octahedral morphology, which is unexpected for calcite crystals. Scanning and transmission electron microscopy reveal a microstructure composed of individual highly aligned calcite crystallites. Although the aggregates consist of independent crystallites, the X-ray diffraction patterns suggest calcite single crystals. By analogy with some biominerals, the inorganic assembly is intergrown with an organic hydrogel network. A specific model is proposed for growth of the aggregate
Though calcium carbonate crystals with various morphologies have been successfully fabricated via bi...
Hydrogels have been thought to be the material which can provide appealing replacements of biologica...
We investigate the effect of gelatin, agarose, and silica hydrogel with and without magnesium in the...
We investigate the effect of gelatin, agarose, and silica hydrogel with and without magnesium in the...
Trabajo presentado en el 31th European Crystallographic Meeting, celebrado en Oviedo (España), del 2...
Biominerals are complex inorganic-organic structures that often show excellent mechanical properties...
In this paper the mineralization of CaCO3 in various hydrogel matrices is presented. Sulfonic acid b...
The precipitation of calcium carbonate in hydrogel-like environments is used by certain living organ...
Trabajo presentado en el 30th European Crystallographic Meeting, celebrado del 28 de agosto al 1 de ...
Trabajo presentado en la 17th IUMRS International Conference in Asia, celebrada en la Wuhan Universi...
In Nature, organisms produce single-crystal composites of calcite crystals with incorporated biomacr...
Hydrogels are adequate systems for investigating biological structural material formation as they mi...
Calcite crystals with a rhombohedral morphology were synthesized using a biomimetic method in the pr...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
Trabajo presentado en el 14th International Symposium on Biomineralization (BIOMIN XIV) from Molecul...
Though calcium carbonate crystals with various morphologies have been successfully fabricated via bi...
Hydrogels have been thought to be the material which can provide appealing replacements of biologica...
We investigate the effect of gelatin, agarose, and silica hydrogel with and without magnesium in the...
We investigate the effect of gelatin, agarose, and silica hydrogel with and without magnesium in the...
Trabajo presentado en el 31th European Crystallographic Meeting, celebrado en Oviedo (España), del 2...
Biominerals are complex inorganic-organic structures that often show excellent mechanical properties...
In this paper the mineralization of CaCO3 in various hydrogel matrices is presented. Sulfonic acid b...
The precipitation of calcium carbonate in hydrogel-like environments is used by certain living organ...
Trabajo presentado en el 30th European Crystallographic Meeting, celebrado del 28 de agosto al 1 de ...
Trabajo presentado en la 17th IUMRS International Conference in Asia, celebrada en la Wuhan Universi...
In Nature, organisms produce single-crystal composites of calcite crystals with incorporated biomacr...
Hydrogels are adequate systems for investigating biological structural material formation as they mi...
Calcite crystals with a rhombohedral morphology were synthesized using a biomimetic method in the pr...
Self-assembled monolayers (SAMs) provide simple, yet sophisticated surfaces to mimic the effect of p...
Trabajo presentado en el 14th International Symposium on Biomineralization (BIOMIN XIV) from Molecul...
Though calcium carbonate crystals with various morphologies have been successfully fabricated via bi...
Hydrogels have been thought to be the material which can provide appealing replacements of biologica...
We investigate the effect of gelatin, agarose, and silica hydrogel with and without magnesium in the...