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Nanoparticle filled rubbery polymer membranes for CO2 sequestration
Scott T. Matteucci
, Haiqing Lin
, Benny Freeman
, Victor Kusuma
,
Miquel Jose-Yacaman
, Sumod Kalakkunnath
, Douglass S. Kalika
Research output
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Paper
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peer-review
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Keyphrases
Nanoparticles
100%
CO2 Sequestration
100%
Light Gas
100%
Polymer Membrane
100%
Rubbery Polymer
100%
Particle Loading
75%
C4F7N/CO2
75%
Gas Transport
50%
Gas Permeability
50%
Polymer Matrix
50%
N2 Selectivity
50%
Order of Magnitude
25%
Low Temperature
25%
Poly(ethylene oxide)
25%
Non-porous
25%
Maxwell
25%
Particle Surface
25%
Particle Distribution
25%
Non-cross-linked
25%
Gas Adsorption
25%
Surface Chemistry
25%
CO2 Permeation
25%
Transport Behavior
25%
Decreasing Temperature
25%
Permeability Enhancement
25%
Polymeric Membrane
25%
MgO-SiO2
25%
Gas Transport Properties
25%
Gas Selectivity
25%
TiO2-SiO2
25%
H2 Permeance
25%
TiO2 Etc
25%
Primary Particle Diameter
25%
Barrier Materials
25%
Vapor Permeability
25%
Gas Permeation
25%
Permeability Loss
25%
Permeation Experiments
25%
Neat Polymers
25%
DSC Experiments
25%
Transport Enhancement
25%
Metal Oxide Nanoparticles
25%
Butadiene
25%
Polymer Crystallization
25%
Engineering
Nanoparticle
100%
CO2 Sequestration
100%
Light Gas
100%
Polymer Matrix
50%
Nanocomposite
50%
Low-Temperature
25%
Particle Diameter
25%
Rubbery Matrix
25%
Barrier Material
25%
Decreasing Temperature
25%
Highlight
25%
Metal Oxide Nanoparticles
25%
Neat Polymer
25%
Particle Surface
25%
Material Science
Carbon Dioxide
100%
Nanoparticle
100%
Nanocomposites
40%
Polymer Matrix
40%
Scanning Electron Microscopy
20%
Magnesium Oxide
20%
Titanium Dioxide
20%
Polyethylene Glycol
20%
Gas Permeability
20%
Metal Oxide
20%
Differential Scanning Calorimetry
20%
Polymeric Membrane
20%