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Thermal properties and surface reactivity in simulated body fluid of new strontium ion-containing phosphate glasses
by
Petit, L.
, Videau, J. J.
, Massera, J.
, Hupa, L.
, Hupa, M.
, Cardinal, T.
in
Apatite
/ Biocompatible Materials - chemistry
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Body fluids
/ Body Fluids - chemistry
/ Calcium oxide
/ Ceramics
/ Chemical Sciences
/ Chemistry and Materials Science
/ Composites
/ Constraining
/ Glass
/ Glass - chemistry
/ Glass fibers
/ Hot Temperature
/ Leaching
/ Magnesium oxide
/ Material chemistry
/ Materials Science
/ Medical sciences
/ Natural Materials
/ Phosphates
/ Phosphates - chemistry
/ Polymer Sciences
/ Regenerative Medicine/Tissue Engineering
/ Short range order
/ Strontium
/ Strontium - chemistry
/ Strontium oxides
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thermal Conductivity
/ Thermal properties
/ Thermodynamic properties
/ Thin Films
2013
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Thermal properties and surface reactivity in simulated body fluid of new strontium ion-containing phosphate glasses
by
Petit, L.
, Videau, J. J.
, Massera, J.
, Hupa, L.
, Hupa, M.
, Cardinal, T.
in
Apatite
/ Biocompatible Materials - chemistry
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Body fluids
/ Body Fluids - chemistry
/ Calcium oxide
/ Ceramics
/ Chemical Sciences
/ Chemistry and Materials Science
/ Composites
/ Constraining
/ Glass
/ Glass - chemistry
/ Glass fibers
/ Hot Temperature
/ Leaching
/ Magnesium oxide
/ Material chemistry
/ Materials Science
/ Medical sciences
/ Natural Materials
/ Phosphates
/ Phosphates - chemistry
/ Polymer Sciences
/ Regenerative Medicine/Tissue Engineering
/ Short range order
/ Strontium
/ Strontium - chemistry
/ Strontium oxides
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thermal Conductivity
/ Thermal properties
/ Thermodynamic properties
/ Thin Films
2013
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Thermal properties and surface reactivity in simulated body fluid of new strontium ion-containing phosphate glasses
by
Petit, L.
, Videau, J. J.
, Massera, J.
, Hupa, L.
, Hupa, M.
, Cardinal, T.
in
Apatite
/ Biocompatible Materials - chemistry
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Body fluids
/ Body Fluids - chemistry
/ Calcium oxide
/ Ceramics
/ Chemical Sciences
/ Chemistry and Materials Science
/ Composites
/ Constraining
/ Glass
/ Glass - chemistry
/ Glass fibers
/ Hot Temperature
/ Leaching
/ Magnesium oxide
/ Material chemistry
/ Materials Science
/ Medical sciences
/ Natural Materials
/ Phosphates
/ Phosphates - chemistry
/ Polymer Sciences
/ Regenerative Medicine/Tissue Engineering
/ Short range order
/ Strontium
/ Strontium - chemistry
/ Strontium oxides
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thermal Conductivity
/ Thermal properties
/ Thermodynamic properties
/ Thin Films
2013
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Thermal properties and surface reactivity in simulated body fluid of new strontium ion-containing phosphate glasses
Journal Article
Thermal properties and surface reactivity in simulated body fluid of new strontium ion-containing phosphate glasses
2013
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Overview
In this paper, we investigate the effect of SrO substitution for CaO in 50P
2
O
5
–10Na
2
–(40−x)CaO–xSrO glass system (x from 0 to 40) on the thermal and structural properties and also on the glass reactivity in simulated body fluid (SBF) in order to find new glass candidates for biomedical glass fibers. The addition of SrO at the expense of CaO seems to restrain the leaching of phosphate ions in the solution limiting the reduction of the solution pH. We observed the formation of an apatite layer at the surface of the glasses when in contact with SBF. SrO and MgO were found in the apatite layer of the strontium ion-containing glasses, the concentration of which increases with an increase of SrO content. We think that it is the presence of MgO and SrO in the layer which limits the leaching of phosphate in the solution and thus the glass dissolution in SBF.
Publisher
Springer US,Springer,Springer Nature B.V,Springer Verlag
Subject
/ Biocompatible Materials - chemistry
/ Biological and medical sciences
/ Biomedical Engineering and Bioengineering
/ Ceramics
/ Chemistry and Materials Science
/ Glass
/ Leaching
/ Regenerative Medicine/Tissue Engineering
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
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