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Engineering of high-resolution boron and cobalt co-substituted 45S5 bioactive glass-based Kagome scaffolds via digital light processing
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DOI:10.1016/j.oceram.2026.101000.png)
Abstract
En 中文
• Co-substituted 45S5 BG-based scaffolds were DLP-printed at a 10 µm layer resolution. • Kagome scaffolds with 82% theoretical porosity were successfully fabricated. • Co-substitution increases critical energy and reduces the penetration depth of slurries. • Kinetic analysis optimizes debinding to ensure defect-free scaffold sintering. • Sintered co-BG samples show complete apatite coverage after 14 days in SBF.
Keywords:
3D Scaffolds
Bone tissue engineering
Co-substituted 45S5
Digital Light-Processing
Slurry characteristics
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