Nanocrystalline apatites are major constituents of hard tissues, and attempts are made worldwide to prepare synthetic analogs. However the impact of synthesis/ postsynthesis parameters is often disregarded. Based on an updated knowledge on such compounds, we inspected the effects of synthesis parameters (maturation time, temperature,pH, nature of counter-ions) and post-treatments (re-immersion in aqueous media, thermal treatment) on physicochemical characteristics. Great modifications were noticed during the 3 first days of maturation, where a progressive evolution of the apatite phase (localized in the core of the nanocrystals) toward stoichiometry was observed at the expense of the non-apatitic surface layer which progressively disa...
Nanocrystalline nonstoichiometric apatites constitute the mineral part of bones, and synthe...
Apatites can accommodate a large number of vacancies and afford multiple ionic substitutions determi...
The mineral fractions of bones and teeth are non-stoichiometric apatite crystals. Their morphology, ...
Nanocrystalline apatites constitute the mineral part of hard tissues, and can be reproduced syntheti...
Nanocrystalline apatites play an important role in biomineralisation and they are used as bioactive ...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
Nanocrystalline apatitic calcium phosphates play a crucial role in calcified tissues and biomaterial...
Nanocrystalline calcium phosphate apatites constitute the main inorganic part of hard tissues, and a...
Several types of nanocrystalline apatites have been described, obtained in various ways. Among these...
Biomimetic calcium phosphate apatites are particularly adapted to bio-medical applications due to th...
Biomimetic nanocrystalline apatites analogous to bone mineral can be prepared using soft chemistry. ...
Calcium phosphate apatites are inorganic compounds encountered in many different mineralized tissues...
Bone is a natural nanocomposite. Its mineral component is nanocrystalline calcium phosphate apatite,...
Bone remodeling and tooth enamel maturation are biological processes that alter the physico-chemical...
This contribution focused on the preparation of peroxide-doped calciumphosphate apatites—in viewof p...
Nanocrystalline nonstoichiometric apatites constitute the mineral part of bones, and synthe...
Apatites can accommodate a large number of vacancies and afford multiple ionic substitutions determi...
The mineral fractions of bones and teeth are non-stoichiometric apatite crystals. Their morphology, ...
Nanocrystalline apatites constitute the mineral part of hard tissues, and can be reproduced syntheti...
Nanocrystalline apatites play an important role in biomineralisation and they are used as bioactive ...
Non-stoichiometric nanocrystalline apatite powders are used to elaborate highly-bioactive biomateria...
Nanocrystalline apatitic calcium phosphates play a crucial role in calcified tissues and biomaterial...
Nanocrystalline calcium phosphate apatites constitute the main inorganic part of hard tissues, and a...
Several types of nanocrystalline apatites have been described, obtained in various ways. Among these...
Biomimetic calcium phosphate apatites are particularly adapted to bio-medical applications due to th...
Biomimetic nanocrystalline apatites analogous to bone mineral can be prepared using soft chemistry. ...
Calcium phosphate apatites are inorganic compounds encountered in many different mineralized tissues...
Bone is a natural nanocomposite. Its mineral component is nanocrystalline calcium phosphate apatite,...
Bone remodeling and tooth enamel maturation are biological processes that alter the physico-chemical...
This contribution focused on the preparation of peroxide-doped calciumphosphate apatites—in viewof p...
Nanocrystalline nonstoichiometric apatites constitute the mineral part of bones, and synthe...
Apatites can accommodate a large number of vacancies and afford multiple ionic substitutions determi...
The mineral fractions of bones and teeth are non-stoichiometric apatite crystals. Their morphology, ...