Minerals substituted apatite (M-HA) nanoparticles were prepared by the precipitation of minerals and phosphate reactants in choline chloride-Thiourea (ChCl-TU) deep eutectic solvent (DESs) as a facile and green way approach. After preparation of nanoparticles (F-M-HA (F = Fresh solvent)), the DESs was recovered productively and reprocess for the preparation of R-M-HA nanoparticles (R = Recycle solvent).The functional groups, phase, surface texture and the elemental composition of the M-HA nanoparticles were evaluated by advance characterization methods. The physicochemical results of the current work authoritative the successful uses of the novel (ChCl-TU) DESs as eco-friendly recuperate and give the medium for the preparation of M-HA nanop...
Hydroxyapatite [Ca10(PO4)6(OH)2] (HAp) is a calcium phosphate mineral of great interest in biomateri...
SummarySynthesised hydroxyapatite (HAp) exhibits excellent biocompatibility, making it an ideal cand...
Progressive aging harms bone tissue structure and function and, thus, requires effective therapies f...
Minerals substituted apatite (M-HA) nanoparticles were prepared by the precipitation of minerals and...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Hydroxyapatite (HA) is biological apatite has close similarity of composition with human bone and te...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Bioactive nano-hydroxyapatites have been synthesised for orbital floor repair and regeneration. Hydr...
This study investigated the nanoemulsion technique as a means to synthesize carbonated hydroxyapatit...
Hydroxyapatite [Ca10(PO4)6(OH)2] (HAp) is a calcium phosphate mineral of great interest in biomateri...
SummarySynthesised hydroxyapatite (HAp) exhibits excellent biocompatibility, making it an ideal cand...
Progressive aging harms bone tissue structure and function and, thus, requires effective therapies f...
Minerals substituted apatite (M-HA) nanoparticles were prepared by the precipitation of minerals and...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
The use of hydroxyapatite (HA) based materials is widely spread in the repair of bone tissue and the...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Nano-science, where the properties of materials are exploited for innovative amazing applications is...
Hydroxyapatite (HA) is biological apatite has close similarity of composition with human bone and te...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Hydroxyapatite, the main inorganic material in natural bone, has been used widely for orthopaedic ap...
Bioactive nano-hydroxyapatites have been synthesised for orbital floor repair and regeneration. Hydr...
This study investigated the nanoemulsion technique as a means to synthesize carbonated hydroxyapatit...
Hydroxyapatite [Ca10(PO4)6(OH)2] (HAp) is a calcium phosphate mineral of great interest in biomateri...
SummarySynthesised hydroxyapatite (HAp) exhibits excellent biocompatibility, making it an ideal cand...
Progressive aging harms bone tissue structure and function and, thus, requires effective therapies f...