This work explores the preparation of luminescent and biomimetic Tb3+-doped citrate-functionalized carbonated apatite nanoparticles. These nanoparticles were synthesized employing a citrate-based thermal decomplexing precipitation method, testing a nominal Tb3+ doping concentration between 0.001 M to 0.020 M, and a maturation time from 4 h to 7 days. This approach allowed to prepare apatite nanoparticles as a single hydroxyapatite phase when the used Tb3+ concentrations were (i) ≤ 0.005 M at all maturation times or (ii) = 0.010 M with 4 h of maturation. At higher Tb3+ concentrations, amorphous TbPO4·nH2O formed at short maturation times, while materials consisting of a mixture of carbonated apatite prisms, TbPO4·H2O (rhabdophane) nanocrysta...
This work explores in depth the simultaneous self-assembly and mineralization of type I collagen by ...
© 2017 Elsevier B.V.The work introduces Tb(III)-centered luminescence of amino-modified silica nanop...
This work explores in depth the simultaneous self¿assembly and mineralization of type I collagen by ...
Nanomedicine covers the application of nanotechnologies in medicine. Of particular interest is the s...
Biocompatible nanosystems exhibiting long-lifetime (∼millisecond) luminescence features are particul...
This research was funded by Spanish Agencia Estatal de Investigación of the Ministerio de Ciencia e ...
Novel citrate-functionalized carbonate-apatite nanoparticles with mean lengths ranging from 20 to 10...
International audienceBiomimetic calcium phosphate apatites, analogous to bone mineral, may now be p...
In the field of Nanomedicine, there is an increasing demand for new inorganic nanophosphors with lo...
International audienceThe setup of colloidal hybrid nanosystems based on biomimetic calcium phosphat...
Apatite nanoparticles are the main inorganic component of human hard tissues, and have been used in ...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Nanocrystalline calcium phosphate apatites constitute the mineral part of hard tissues, and the synt...
In this work, the efficiency of bioinspired citrate-functionalized nanocrystalline apatites as nanoc...
This work explores in depth the simultaneous self-assembly and mineralization of type I collagen by ...
© 2017 Elsevier B.V.The work introduces Tb(III)-centered luminescence of amino-modified silica nanop...
This work explores in depth the simultaneous self¿assembly and mineralization of type I collagen by ...
Nanomedicine covers the application of nanotechnologies in medicine. Of particular interest is the s...
Biocompatible nanosystems exhibiting long-lifetime (∼millisecond) luminescence features are particul...
This research was funded by Spanish Agencia Estatal de Investigación of the Ministerio de Ciencia e ...
Novel citrate-functionalized carbonate-apatite nanoparticles with mean lengths ranging from 20 to 10...
International audienceBiomimetic calcium phosphate apatites, analogous to bone mineral, may now be p...
In the field of Nanomedicine, there is an increasing demand for new inorganic nanophosphors with lo...
International audienceThe setup of colloidal hybrid nanosystems based on biomimetic calcium phosphat...
Apatite nanoparticles are the main inorganic component of human hard tissues, and have been used in ...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Synthetic nanostructured hybrid composites based on collagen and nanocrystalline apatites are intere...
Nanocrystalline calcium phosphate apatites constitute the mineral part of hard tissues, and the synt...
In this work, the efficiency of bioinspired citrate-functionalized nanocrystalline apatites as nanoc...
This work explores in depth the simultaneous self-assembly and mineralization of type I collagen by ...
© 2017 Elsevier B.V.The work introduces Tb(III)-centered luminescence of amino-modified silica nanop...
This work explores in depth the simultaneous self¿assembly and mineralization of type I collagen by ...