Engineering & Materials Science
Apatite
100%
Titanium
60%
Hydroxyapatite
47%
Body fluids
38%
Sol-gels
30%
Substrates
28%
Nuclear magnetic resonance
27%
Bioactivity
24%
Silicates
23%
Glass
22%
Chitosan
22%
Ions
21%
Titanium dioxide
21%
Bone
20%
Silica
19%
Phosphates
17%
Gels
16%
Adsorption
16%
Calcium phosphate
15%
Blood
15%
Crystalline materials
15%
Magic angle spinning
13%
Hydrogen peroxide
13%
Calcium
12%
Proteins
12%
Nuclear magnetic resonance spectroscopy
10%
Polymers
10%
Coatings
10%
Polydimethylsiloxane
9%
Sol-gel process
8%
Nucleation
7%
Titanium oxides
7%
Cell proliferation
7%
X ray diffraction
7%
Platelets
6%
Osteoblasts
6%
Heat treatment
6%
Carbonates
6%
Scaffolds
6%
Water
6%
Biomimetics
6%
Membranes
6%
Atoms
6%
Powders
6%
Hydrolysis
6%
Stainless steel
6%
Nanorods
5%
Temperature
5%
Fluorine
5%
Biomaterials
5%
Chemical Compounds
Apatite
70%
Glass
16%
Rutile
16%
Bioactivity
14%
Surface
14%
Titanium Dioxide
14%
Gel
13%
Calcium Phosphate
12%
Chitosan
10%
Porosity
9%
Hydrogen Peroxide
9%
Liquid Film
8%
Sol-Gel Processing
8%
Adsorption
8%
Ion
8%
Phosphate
8%
Coating Agent
8%
Rod Like Crystal
7%
Nucleation
6%
Sol Gel Process
6%
Nanorod
5%
Titanium Oxide
5%
NMR Spectroscopy
5%
Application
5%
Microstructure
5%
X-Ray Diffraction
5%
MAS NMR Spectroscopy
5%
Amount
5%
Silicate Glass
5%
Physics & Astronomy
apatites
33%
body fluids
18%
titanium
16%
nuclear magnetic resonance
11%
gels
11%
activity (biology)
10%
glass
8%
bones
7%
silicon dioxide
7%
silicates
7%
anatase
6%
gelatins
6%
rutile
6%
preparation
6%
siloxanes
5%
synthesis
5%
soaking
5%
calcium
5%