This paper reports the synthesis of Eu-doped hydroxyapatite (HA:Eu) resulting in particles with nanorod diameters from 9 to 26 nm using the microwave hydrothermal method (HTMW). Eu3+ ions were used as a marker in the HA network by basic hydrolysis followed by the HTMW treatment. The crystalline HA:Eu nanorod nature in a short-range order was detected by photoluminescence (PL) measurements from Eu3+ emission into the HA matrix. Thus, was possible to verify that HA crystallization is favored in a short structural order when the HTMW treatment time was increased from 0 to 40 min and that the Eu3+ substitution in the HA lattice is site-selective. (C) 2012 Elsevier B.V. All rights reserved.Fundação de Amparo à Pesquisa do Estado de São Paulo (FA...
In this work it is presented for the first time the nanostructured hydroxyapatites doped with 0.5, 1...
Hydroxyapatite (Ca 10(PO 4) 6(OH) 2, HA) nanoparticles activated with Eu 3+ were synthesized using t...
Hydroxyapatite (Ca-5(PO4)(3)OH) nano- and microcrystals with multiform morphologies (separated nanow...
This paper reports the synthesis of Eu-doped hydroxyapatite (HA:Eu) resulting in particles with nano...
This paper reports the synthesis of Eu-doped hydroxyapatite (HA:Eu) resulting in particles with nano...
Europium doped hydroxyapatite (Eu:HAp) nanosized particles with multiform morphologies have been suc...
Copyright © 2012 Carmen Steluta Ciobanu et al. This is an open access article distributed under the ...
Abstract Hydroxyapatite nanorods aligned with ultrahigh crystallinity and high-yield were successful...
Hydroxyapatite nanorods aligned with ultrahigh crystallinity and high-yield were successfully synth...
The noble synthesis method for hydroxyapatite (HAp) nanoparticles wits exploited using a fairly simp...
In the present study hydroxyapatite (HA) nano-hexagonal rods with 70-90 nm diameter and 400-500 nm l...
Hydroxyapatite (Ca 10(PO 4) 6(OH) 2, HA) nanoparticles activated with Eu 3+ were synthesized using t...
This paper reports an optimized, simple, fast and inexpensive method for hydroxyapatite (HA) nanopar...
In the present study, hydroxyapatite (HA, Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>OH) with differe...
Europium-doped hydroxyapatite Ca10(PO4)6(OH)2 (3% mol) powders were synthesized by an optimized chem...
In this work it is presented for the first time the nanostructured hydroxyapatites doped with 0.5, 1...
Hydroxyapatite (Ca 10(PO 4) 6(OH) 2, HA) nanoparticles activated with Eu 3+ were synthesized using t...
Hydroxyapatite (Ca-5(PO4)(3)OH) nano- and microcrystals with multiform morphologies (separated nanow...
This paper reports the synthesis of Eu-doped hydroxyapatite (HA:Eu) resulting in particles with nano...
This paper reports the synthesis of Eu-doped hydroxyapatite (HA:Eu) resulting in particles with nano...
Europium doped hydroxyapatite (Eu:HAp) nanosized particles with multiform morphologies have been suc...
Copyright © 2012 Carmen Steluta Ciobanu et al. This is an open access article distributed under the ...
Abstract Hydroxyapatite nanorods aligned with ultrahigh crystallinity and high-yield were successful...
Hydroxyapatite nanorods aligned with ultrahigh crystallinity and high-yield were successfully synth...
The noble synthesis method for hydroxyapatite (HAp) nanoparticles wits exploited using a fairly simp...
In the present study hydroxyapatite (HA) nano-hexagonal rods with 70-90 nm diameter and 400-500 nm l...
Hydroxyapatite (Ca 10(PO 4) 6(OH) 2, HA) nanoparticles activated with Eu 3+ were synthesized using t...
This paper reports an optimized, simple, fast and inexpensive method for hydroxyapatite (HA) nanopar...
In the present study, hydroxyapatite (HA, Ca<sub>5</sub>(PO<sub>4</sub>)<sub>3</sub>OH) with differe...
Europium-doped hydroxyapatite Ca10(PO4)6(OH)2 (3% mol) powders were synthesized by an optimized chem...
In this work it is presented for the first time the nanostructured hydroxyapatites doped with 0.5, 1...
Hydroxyapatite (Ca 10(PO 4) 6(OH) 2, HA) nanoparticles activated with Eu 3+ were synthesized using t...
Hydroxyapatite (Ca-5(PO4)(3)OH) nano- and microcrystals with multiform morphologies (separated nanow...