INIS
catalysts
100%
synthesis
91%
nanoparticles
49%
titanium oxides
37%
graphene
28%
applications
28%
reduction
27%
oxides
25%
nanocomposites
25%
phosphates
23%
yields
23%
nitrophenol
18%
photocatalysis
17%
nanostructures
17%
adsorbents
16%
oils
16%
nickel
15%
metals
15%
thin films
14%
solvents
14%
coffee
14%
nanowires
14%
performance
14%
xrd
13%
conversion
13%
carbon
13%
silica
12%
adsorption
12%
scanning electron microscopy
12%
dyes
12%
wastes
11%
gels
11%
modifications
11%
calcium oxides
10%
antioxidants
10%
microwave radiation
9%
hydrogen 4
9%
fly ash
9%
hydrates
9%
zinc oxides
9%
cellulose
9%
hydrazine
9%
ethanol
9%
ferrite
9%
dehydrogenation
9%
bentonite
9%
impregnation
9%
precursor
8%
production
8%
comparative evaluations
8%
Keyphrases
Iron Oxide
32%
Catalytic Activity
22%
Silica
21%
Graphene Oxide
18%
Leaf Extract
15%
One-pot Synthesis
15%
Facile Synthesis
15%
Spirooxindole
15%
Cinnamaldehyde
15%
Phosphate Adsorption
14%
4-Nitrophenol Reduction
14%
Diffusive Gradients in Thin Films
14%
Green Catalyst
14%
Aquatic Systems
14%
TiO2 Nanowires
14%
Guaiacol
14%
Chitosan
13%
Silver Nitrate
13%
NiFe2O4
11%
Rutile
11%
Fourier Transform Infrared Spectroscopy (FT-IR)
11%
Photocatalytic Activity
11%
Binding Gel
10%
Pd-TiO2
10%
Adsorbent
9%
Nanocatalyst
9%
1,4-Dihydropyridines (1,4-DHPs)
9%
Oxidative Coupling of Methane
9%
Trifluoromethanesulfonate
9%
Doebner Reaction
9%
Fly Ash
9%
Orthophosphate
9%
Microwave-assisted
9%
Magnetically Separable
9%
Oxide Catalysts
9%
Bentonite
9%
Iron(III)
9%
Graphene Nanosheets
9%
Hydrazine Hydrate
9%
SBA-15
9%
Hydrodeoxygenation
8%
Nanoparticles
8%
Coffee Grounds
8%
Bio-oil
8%
X Ray Diffraction
8%
Antioxidant Activity
8%
4-Nitrophenol
7%
Heterogenous Catalyst
7%
Methylene Blue Degradation
7%
TiO2 Catalyst
7%