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Jan Ady
MATERIALS ENGINEERING
Biomaterial
Department of Physics
Faculty of Science and Technology
Physics
h-index
35
Citations
4
h-index
Calculated based on number of publications stored in Pure and citations from Scopus
2016
2024
Research activity per year
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Dive into the research topics where Jan Ady is active. These topic labels come from the works of this person. Together they form a unique fingerprint.
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Keyphrases
Polyvinyl Alcohol
100%
Tricalcium Phosphate
72%
Perovskite
54%
Nanosize
54%
Chitosan
54%
Sol-gel Method
54%
Crystallites
49%
Barium Titanate
47%
Hyaluronic Acid
43%
Calcination Temperature
43%
Silica
43%
Crystallite Size
39%
Dislocation
39%
Nano-hydroxyapatite (n-HA)
30%
Gamma Irradiation
30%
Swelling Ratio
29%
Rutile
27%
Nanoparticles
27%
Thermal Properties
27%
Barium Titanate Powder
27%
Sol-gel
27%
Microstructure
27%
Wave number
25%
Enthalpy of Fusion
24%
Crystallization Enthalpy
24%
Rhombohedral
24%
Size-strain
24%
Tetragonal
23%
Aldehyde Hyaluronic Acid
21%
N,O-carboxymethyl chitosan
21%
Chitosan Hydrogel
21%
Materials Physics
21%
Injectable Hydrogel
21%
Carboxymethyl Cellulose Composite
21%
Hidroxyapatite
21%
Anti-adhesive Agent
21%
Polyvinyl Alcohol-sodium Alginate
21%
Fibrous Membrane
21%
Sodium Alginate Hydrogel
21%
Potassium Polyacrylate
21%
Nitrogen Ions
21%
Aloe Vera Fiber
21%
Superabsorbent Hydrogel
21%
Amorphous Silica
21%
Biomaterial Composites
21%
Metal Compounds
21%
Barium Titanate Nanoparticles
21%
Nanocomposite Membrane
21%
Gelatin Nanocomposites
21%
Anti-adhesion
21%
Material Science
Composite Material
96%
Sol-Gel
83%
Crystallite
81%
X-Ray Diffraction
80%
Hydrogel
65%
Barium Titanate
65%
Crystallite Size
61%
Scanning Electron Microscopy
59%
Differential Scanning Calorimetry
55%
Phase Composition
54%
Nanoparticle
53%
Calcination
43%
Poly Vinyl Alcohol
43%
Titanium Dioxide
39%
Crystal Structure
32%
Biomaterial
26%
Thermal Property
26%
Bioceramic
21%
Silicon Dioxide
21%
Polysiloxane
21%
Electrospinning
21%
Differential Thermogravimetric Analysis
21%
Potassium
21%
Sodium
21%
Nanocomposite
21%
Surface Topography
21%
Critical Micelle Concentration
21%
Density
16%
Poly Methyl Methacrylate
16%
Energy-Dispersive X-Ray Spectroscopy
16%
Thermal Analysis
14%
Pore Size
14%
Williamson-Hall Plot
10%
Scherrer Equation
10%
Thermogravimetric Analysis
10%
Mechanical Property
10%
Nanopowder
10%
Crystallography
10%
Surface Treatment
10%
Ultimate Tensile Strength
9%
Prepolymer
8%
Polymerization
8%
Biocompatibility
8%
Absorption Spectra
8%
Sintering Temperature
8%
Biodegradation
8%
Nanofiber
7%
Scaffold for Tissue Engineering
7%
Glass Transition
7%
Titanium
5%