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Effects of nano-bioactive glass on structural, mechanical and bioactivity properties of Poly (3-hydroxybutyrate) electrospun scaffold for bone tissue engineering applications
Facile synthesis of glucose-functionalized reduced graphene oxide (GFRGO)/poly (vinyl alcohol) nanocomposites for improving thermal and mechanical properties
Surface modified SiO2 nanoparticles by thiamine and ultrasonication synthesis of PCL/SiO2-VB1 NCs: Morphology, thermal, mechanical and bioactivity investigations
Using Green Process for the Synthesis of Poly (Vinyl Alcohol)/α-Al2O3-Thiamine Nanocomposite: Thermal, Mechanical, Contact Angle, and Morphological Studies
Evaluation of structural mechanical and cellular behavior of electrospun poly-3-hydroxybutyrate scaffolds loaded with glucosamine sulfate to develop cartilage tissue engineering
Study on morphology thermal mechanical and Cd(II) adsorption properties of PVC/alpha-MnO2-stearic acid nanocomposites production and application
Study on morphology thermal mechanical and Cd(II) adsorption properties of PVC/alpha-MnO2-stearic acid nanocomposites production and application
Combinational processing of 3D printing and electrospinning of hierarchical poly(lactic acid)/gelatin-forsterite scaffolds as a biocomposite Mechanical and biological assessment
Combinational processing of 3D printing and electrospinning of hierarchical poly(lactic acid)/gelatin-forsterite scaffolds as a biocomposite Mechanical and biological assessment
Combinational processing of 3D printing and electrospinning of hierarchical poly(lactic acid)/gelatin-forsterite scaffolds as a biocomposite Mechanical and biological assessment
Facile synthesis of glucose-functionalized reduced graphene oxide (GFRGO)/ poly(vinyl alcohol) nanocomposites for improving thermal and mechanical properties
Facile synthesis of glucose-functionalized reduced graphene oxide (GFRGO)/ poly(vinyl alcohol) nanocomposites for improving thermal and mechanical properties
An experimental study on mechanical properties of a novel hybrid metal polymer joining technology based on a reaction between isocyanate and hydroxyl groups
An experimental study on mechanical properties of a novel hybrid metal polymer joining technology based on a reaction between isocyanate and hydroxyl groups
An experimental study on mechanical properties of a novel hybrid metal polymer joining technology based on a reaction between isocyanate and hydroxyl groups