INIS
membranes
100%
ceramics
100%
applications
100%
purification
100%
layers
100%
synthesis
100%
water
100%
atmospheric pressure
100%
deposition
100%
modifications
22%
sol-gel process
22%
titanium oxides
22%
size
22%
surfaces
11%
substrates
11%
distribution
11%
fabrication
11%
coatings
11%
porous materials
11%
comparative evaluations
11%
permeability
11%
ions
11%
growth
11%
molecular weight
11%
thin films
11%
organic matter
11%
hydrogen 1
11%
gases
11%
water treatment
11%
Engineering
Application
100%
Nanofiltration Membrane
100%
Atomic Layer Deposition
100%
Water Purification
100%
Atmospheric Pressure
100%
Membrane
80%
Cycles
60%
Micropore
20%
Thin Films
20%
Nanofiltration
20%
Sol-Gel Process
20%
Size Distribution
20%
Coating Technique
20%
Gel
20%
Generation System
20%
Low Rate
20%
Deposition Method
20%
Water Treatment
20%
Molecular Weight Cut-off
20%
High Water
20%
Growth Rate
20%
Fabrication
20%
Planar Surface
20%
Average Size
20%
Gas-Phase
20%
Titania
20%
Substrates
20%
Material Science
Water
100%
Ceramics
100%
Purification
100%
Nanofiltration Membrane
100%
Membrane
80%
Sol-Gel
40%
Titanium Dioxide
40%
Permeability
20%
Coating
20%
Biological Material
20%
Surface
20%
Growth Rate
20%
Gas
20%
Thin Films
20%
Keyphrases
Membrane Synthesis
100%
Atmospheric Pressure Atomic Layer Deposition
100%
Membrane Application
100%
Ceramic Microfiltration Membrane
100%
Advanced Water Treatment
16%
Planar Surfaces
16%
Membrane Modification
16%
Sol-gel Method
16%
Molecular Weight Cut-off
16%
Atomic Layer Deposition Method
16%
Nanoporous Membrane
16%
High Water Permeability
16%
Efficient Separation
16%
Vacuum Generation
16%
Coating Techniques
16%
Generation System
16%
Membrane Fabrication
16%
Organic Ions
16%
Chemical Engineering
Water Purification
100%
Nanofiltration
100%
Atomic Layer Deposition
100%
Titanium Dioxide
33%
Gel
33%
Paper Coating
16%
Water
16%
Water Treatment
16%