The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based on åkermanite as a promising bioceramic for stereolithography. The macroporosity was designed by implementing 3D models corresponding to different lattice structures (cubic, diamond, Kelvin, and Kagome). To obtain micro-scale porosity, flame synthesized glass microbeads with 10 wt% of silicone resins were utilized to fabricate green scaffolds, later converted into targeted bioceramic phase by firing at 1100 °C in air. No chemical reaction between the glass microspheres, crystallizing into åkermanite, and silica deriving from silicone oxidation was observed upon heat treatment. Silica acted as a binder between the adjacent microspheres, enhanci...
Hierarchically porous structures are important in adsorption applications and can be used in gas tre...
In order to increase the bone forming ability of MBG-PCL composite scaffold, microporosity was creat...
A 3D printing fused filament fabrication (FFF) approach has been implemented for the creation of mic...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
Novel manufacturing techniques such as additive manufacturing also referred to as 3D printing hold a...
Monolithic and powdered Biosilicate®, produced by conventional glass-ceramic technology, have been w...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Silicate bioceramics possess an excellent bioactivity; however, shaping them into complex geometries...
Motivated by the hierarchical micro and nanoscale features in terms of porosity of diatomite, the pr...
Microspheres have tremendous potential as a scaffold material for tissue engineering applications du...
Abstract Porous materials are relevant for a broad range of technologies from catalysis and filtrati...
Glass microspheres with the exact stoichiometry of åkermanite (Ca2MgSi2O7), one of the most promisin...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Silicate bioceramic scaffolds are of great interest in bone tissue engineering, but the fabrication ...
Hierarchically porous structures are important in adsorption applications and can be used in gas tre...
In order to increase the bone forming ability of MBG-PCL composite scaffold, microporosity was creat...
A 3D printing fused filament fabrication (FFF) approach has been implemented for the creation of mic...
The present study illustrates the manufacturing method of hierarchically porous 3D scaffolds based o...
Novel manufacturing techniques such as additive manufacturing also referred to as 3D printing hold a...
Monolithic and powdered Biosilicate®, produced by conventional glass-ceramic technology, have been w...
This article reports on the use of the binder jetting three-dimensional printing process combined wi...
Silicate bioceramics possess an excellent bioactivity; however, shaping them into complex geometries...
Motivated by the hierarchical micro and nanoscale features in terms of porosity of diatomite, the pr...
Microspheres have tremendous potential as a scaffold material for tissue engineering applications du...
Abstract Porous materials are relevant for a broad range of technologies from catalysis and filtrati...
Glass microspheres with the exact stoichiometry of åkermanite (Ca2MgSi2O7), one of the most promisin...
The use of porous three-dimensional bioceramic scaffolds to support bone tissue growth and regenerat...
Biomedical scaffolds with a high degree of porosity are known to facilitate the growth of healthy fu...
Silicate bioceramic scaffolds are of great interest in bone tissue engineering, but the fabrication ...
Hierarchically porous structures are important in adsorption applications and can be used in gas tre...
In order to increase the bone forming ability of MBG-PCL composite scaffold, microporosity was creat...
A 3D printing fused filament fabrication (FFF) approach has been implemented for the creation of mic...