Keyphrases
Interface Optimization
100%
Osteosarcoma Therapy
50%
Bioactive Glass
50%
Spontaneous Degradation
50%
Bone Regeneration
50%
Transition Metal Atoms
50%
Polylactic Acid Composites
50%
MXene-based Composites
50%
Calcium Phosphate Glass
50%
Electromagnetic Shielding Effectiveness
50%
Composite Interface
50%
Bone Mineral
50%
Bone Marrow Cells
50%
Recycled Carbon Fiber
50%
Carbon Fiber Reinforced
50%
Polylactic Acid
50%
Bone Defect
33%
Residual Tumor Cells
33%
Phosphate Glass
33%
Photothermal Materials
33%
Polylactic Acid Filament
20%
Absorption-dominant
20%
Enhanced Toughness
20%
Carbon Fiber Surface
20%
Element Doping
16%
Doping Content
16%
Hyperthermia Induced
16%
Element Doped
16%
Near-infrared Light
16%
Osteogenic Differentiation
16%
Band Transition
16%
Tumor Elimination
16%
Nonradiative Relaxation
16%
Osteosarcoma Treatment
16%
Controllable Degradation
16%
Glass Melting
16%
Photothermal Performance
16%
Photothermal Ablation
16%
Novel Biomaterials
16%
Osteogenesis
16%
Degradability
16%
Light Absorption
16%
Cell Proliferation
16%
Laser Power Density
16%
Potential Harm
16%
Bone Cells
16%
Bone Repair
16%
Biomaterials
16%
Surgical Resection
16%
Photothermal Therapy
16%
Material Science
Carbon Fiber
100%
Polylactide
100%
MXene
100%
Tumor
50%
Bioglass
50%
Stem Cell
50%
Magnesium Oxide
50%
Transition Metal
30%
Impact Strength
14%
Three Dimensional Printing
14%
Self Assembly
14%
Thermoplastics
14%
Flexural Strength
14%
Bioactive Material
10%
Semiconductor Doping
10%
Glass Melting
10%
Cell Proliferation
10%
Density
10%
Biomaterial
10%
Engineering
Shielding Performance
50%
Toughening
50%
Osteogenic Differentiation
50%
Derived Stem Cell
50%
MXene
50%
Prepared Material
25%
Substrate Interface
25%
Impact Strength
12%
3D Printing
12%
Electrostatics
12%
Caprolactone
12%
Fibre Surface
12%