In this study, the effects of Cu and Fe additives on the structural, dielectric, magnetic, thermal and morphology of hydroxyapatite (HAp) samples were investigated and reported in detail for the first time. The prepared systems were also modeled and examined theoretically. It can be said that both additives affect the thermal behavior of the HAp structure. The addition of Cu affected the morphology of submicron-sized particles with spherical-like shapes with a low degree of agglomeration. Diffuse reflection data revealed that the energy band gap values decreased as Cu was added to the Fe-based HAp structure. The dielectric constant (epsilon') had high values at low frequencies in all samples and decreased with increasing frequency. It could...
Fabrication of hydroxyapatite (HA) via doping with metal ions to enhance its antibacterial propertie...
The aim of this study was to improve the mechanical properties and to optimize antimicrobial activit...
International audienceAntimicrobial materials based on hydroxyapatite nanopowders are functionally a...
Pure and metal doped hydroxyapatite samples nano-particles were prepared by the wet chemical method....
Pure and Cu2+ doped nanohydroxyapatites were synthesised by a precipitation method to investigate th...
Addition of copper in biomaterials is currently investigated because it is expected to enhance the b...
In the first part of this study hydroxyapatite was prepared synthetically through classical wet prec...
L’hydroxyapatite (HA) de formule Ca10(PO4)6(OH)2 fait partie des matériaux les plus utilisés en reco...
The use of magnetic activation has been proposed to answer the growing need for assisted bone and va...
Copyright © 2013 Khairy Mohamed Tohamy Ereibab et al. This is an open access article distributed und...
The paper presents the synthesis of a hydroxyapatite/iron oxide composite utilizing the wet chemical...
The mineral in human bone is not pure stoichiometric calcium phosphate (Ca/P) as it is partially sub...
Hydroxyapatite (HA), with formula Ca10(PO4)6(OH)2, is one of the most used material in bone reconstr...
Abstract Synthetic nano hydroxyapatites (HA) have been considered as potential biomaterials for bone...
The aim of this study was to improve the mechanical properties and to optimize antimicrobial activit...
Fabrication of hydroxyapatite (HA) via doping with metal ions to enhance its antibacterial propertie...
The aim of this study was to improve the mechanical properties and to optimize antimicrobial activit...
International audienceAntimicrobial materials based on hydroxyapatite nanopowders are functionally a...
Pure and metal doped hydroxyapatite samples nano-particles were prepared by the wet chemical method....
Pure and Cu2+ doped nanohydroxyapatites were synthesised by a precipitation method to investigate th...
Addition of copper in biomaterials is currently investigated because it is expected to enhance the b...
In the first part of this study hydroxyapatite was prepared synthetically through classical wet prec...
L’hydroxyapatite (HA) de formule Ca10(PO4)6(OH)2 fait partie des matériaux les plus utilisés en reco...
The use of magnetic activation has been proposed to answer the growing need for assisted bone and va...
Copyright © 2013 Khairy Mohamed Tohamy Ereibab et al. This is an open access article distributed und...
The paper presents the synthesis of a hydroxyapatite/iron oxide composite utilizing the wet chemical...
The mineral in human bone is not pure stoichiometric calcium phosphate (Ca/P) as it is partially sub...
Hydroxyapatite (HA), with formula Ca10(PO4)6(OH)2, is one of the most used material in bone reconstr...
Abstract Synthetic nano hydroxyapatites (HA) have been considered as potential biomaterials for bone...
The aim of this study was to improve the mechanical properties and to optimize antimicrobial activit...
Fabrication of hydroxyapatite (HA) via doping with metal ions to enhance its antibacterial propertie...
The aim of this study was to improve the mechanical properties and to optimize antimicrobial activit...
International audienceAntimicrobial materials based on hydroxyapatite nanopowders are functionally a...