Engineering & Materials Science
Light absorption
100%
Doping (additives)
73%
Nitrogen
61%
Oxidation
58%
Titanium dioxide
43%
Urea
40%
Degradation
34%
Titanium
31%
Photocatalytic activity
27%
Red Shift
27%
Sol-gel process
22%
X ray photoelectron spectroscopy
20%
Energy gap
18%
Spectroscopy
18%
Crystallization
17%
Transmission electron microscopy
16%
Crystals
16%
X ray diffraction
16%
Adsorption
16%
Scanning electron microscopy
13%
Chemical analysis
10%
Medicine & Life Sciences
diethanolamine
96%
titanium dioxide
88%
2-chlorophenol
80%
Nitrogen
65%
Light
47%
triethylamine
42%
Urea
25%
Photoelectron Spectroscopy
19%
Kinetics
19%
hydroquinone
18%
Crystallization
16%
X-Ray Diffraction
15%
Polymethyl Methacrylate
15%
Adsorption
14%
Ultraviolet Rays
13%
Transmission Electron Microscopy
13%
Spectrum Analysis
13%
Electron Scanning Microscopy
12%
Half-Life
11%
Gels
10%
Earth & Environmental Sciences
chlorophenol
61%
oxidation
43%
anatase
42%
nitrogen
39%
urea
34%
degradation
32%
titanium
32%
kinetics
20%
rutile
18%
X-ray spectroscopy
16%
half life
16%
transmission electron microscopy
15%
gel
14%
spectroscopy
13%
crystallization
13%
X-ray diffraction
12%
scanning electron microscopy
12%
crystal
11%
adsorption
11%
energy
8%
rate
5%
method
3%
Chemical Compounds
Photocatalytic Oxidation
77%
Interstitial
69%
Doping Material
58%
Nitrogen
40%
Diethanolamine
27%
2-Chlorophenol
23%
Triethylamine
10%
Titanium Dioxide
9%
Urea
8%
Hydroquinone
5%
Rutile
5%
Reaction Half Life
5%
Ultraviolet Spectrum
4%
Sol Gel Process
4%
Photocatalytic Activity
4%
Band Gap
4%
X-Ray Photoelectron Spectroscopy
3%
Crystallization
3%
Transmission Electron Microscopy
3%
UV/VIS Spectroscopy
3%
X-Ray Diffraction
2%
Adsorption
2%
Energy
2%