Earth and Planetary Sciences
Membrane
100%
Physicochemical Property
100%
Transport Property
100%
Durene
100%
Carbon
100%
Temperature
88%
Show
55%
Gas
44%
Rate
33%
Polyimide
33%
Pyrolysis
33%
Resultant
22%
Tradeoff
22%
Porosity
22%
Annealing
22%
Investigation
22%
Size
22%
Heating
22%
Size Distribution
11%
Selectivity
11%
X Ray Diffraction
11%
Gas Transport
11%
Attenuated Total Reflectance-Fourier Transform Infrared Spectroscopy
11%
Thickness
11%
Value
11%
Permeability
11%
Medium
11%
Chain
11%
Institution
11%
Mobility
11%
Protocol
11%
Chemistry
Transport Property
100%
Durene
100%
Reaction Temperature
100%
Polymer
100%
Carbon
100%
Gas
62%
Polyimide Macromolecule
37%
Pyrolysis
37%
Annealing
25%
Rate
25%
Heating
25%
Methane
12%
Pore Size Distribution
12%
Permeability
12%
Pore Size
12%
Fourier Transform Infrared Spectroscopy
12%
Thermogravimetric Analysis
12%
Degradation Rate
12%
Attenuated Total Reflectance Fourier Transform Infrared Spectrometry
12%
Thickness
12%
Particle Size
12%
Carbon Dioxide
12%
X-Ray Diffraction
12%
Compound Mobility
12%
INIS
membranes
100%
transport
100%
polymers
100%
carbon
100%
durene
100%
gases
55%
size
33%
pyrolysis
33%
performance
22%
annealing
22%
peaks
22%
heating rate
22%
methane
11%
carbon dioxide
11%
comparative evaluations
11%
oxygen
11%
mobility
11%
values
11%
distribution
11%
temperature range
11%
permeability
11%
thickness
11%
chains
11%
thermal gravimetric analysis
11%
xrd
11%
Material Science
Polymer
100%
Membrane
100%
Temperature
88%
Gas
44%
Polyimide
33%
Annealing
22%
Pore Size
11%
Pore Size Distribution
11%
Material
11%
Gas Permeability
11%
Chemical Engineering
Polymer
100%
Carbon
100%
Temperature
100%
Polyimide
37%
Pyrolysis
37%
Heating Rate
25%