A new sol-gel (SG) method is proposed to produce special bioactive glasses (BG_Ca family) characterized by a low tendency to devitrify. These formulations, derived from 45S5 Bioglass®, are characterized by a high content of CaO (45.6 mol%) and by a partial or complete substitution of sodium oxide with potassium oxide (total amount of alkaline oxides: 4.6 mol%), which increases the crystallization temperature up to 900°C. In this way, it is possible to produce them by SG preserving their amorphous nature, in spite of the calcination at 850°C. The sintering behavior of the obtained SG powders is thoroughly investigated and the properties of the sintered bodies are compared to those of the melt-derived (M) counterparts. Furthermore, the SG gla...
The intrinsic brittleness of bioactive glasses (BGs) is one of the main barriers to the widespread u...
Bioactive glasses are widely used in bone tissue engineering (BTE) since they can develop strong bo...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
Bioactive sol-gel glasses are attractive biomaterials from both technological and functional viewpoi...
A 58S bioglass with a composition in the ternary system 58SiO2-33CaO-9P2O5 (wt.%) was prepared by an...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
Novel bioactive glasses based on a Ca- and Mg-modified silicon oxycarbide (SiCaMgOC) were prepared f...
Bioactive glass nanoparticles (BG-NPs), based on both ternary (SiO(2)-CaO-P(2)O(5)) and binary (SiO(...
Most materials for bone tissue engineering are in form of highly porous open-celled components (poro...
To highlight the effect of salt precursors on the final properties, bioactivity and biocompatibility...
Most materials for bone tissue engineering are in form of highly porous open-celled components (poro...
To highlight the effect of salt precursors on the final properties, bioactivity and biocompatibility...
Bioactive glasses of chemical composition 48.4SiO2 -23.8Na2O- 23.8CaO- 4.0P2O5 wt% was prepared thr...
The intrinsic brittleness of bioactive glasses (BGs) is one of the main barriers to the widespread u...
Bioactive glasses are widely used in bone tissue engineering (BTE) since they can develop strong bo...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...
Bioactive sol-gel glasses are attractive biomaterials from both technological and functional viewpoi...
A 58S bioglass with a composition in the ternary system 58SiO2-33CaO-9P2O5 (wt.%) was prepared by an...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
The sol-gel derived porous bioactive glasses have drawn worldwide attention by virtue of the conveni...
Novel bioactive glasses based on a Ca- and Mg-modified silicon oxycarbide (SiCaMgOC) were prepared f...
Bioactive glass nanoparticles (BG-NPs), based on both ternary (SiO(2)-CaO-P(2)O(5)) and binary (SiO(...
Most materials for bone tissue engineering are in form of highly porous open-celled components (poro...
To highlight the effect of salt precursors on the final properties, bioactivity and biocompatibility...
Most materials for bone tissue engineering are in form of highly porous open-celled components (poro...
To highlight the effect of salt precursors on the final properties, bioactivity and biocompatibility...
Bioactive glasses of chemical composition 48.4SiO2 -23.8Na2O- 23.8CaO- 4.0P2O5 wt% was prepared thr...
The intrinsic brittleness of bioactive glasses (BGs) is one of the main barriers to the widespread u...
Bioactive glasses are widely used in bone tissue engineering (BTE) since they can develop strong bo...
Bioactive glasses have the ability to regenerate bone defects as they form a rapid bond with bone an...